1,693 results on '"Nesterenko A. V."'
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2. Simple calculation of the Moon apsides motion
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Nesterenko, V. V.
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Physics - Classical Physics ,Astrophysics - Earth and Planetary Astrophysics - Abstract
A simple and clear method is proposed to calculate the averaged motion of the apsis line in the Moon orbit. The obtained result is $3^{\circ}1'12''$ for the starry period of the Moon revolution around the Earth or $40^{\circ}22'48''$ per year. The modern observed value of the latter quantity is $40^{\circ}41'$ per year. In "Principia" Newton derived $1^{\circ}31'28''$ for the Moon month and $20^{\circ}12''$ per year. That is approximately two times less than the observable values. Unlike the Newton approach we use a simple and obvious averaging of the Sun disturbing force for the starry period of the Moon revolution around the Earth. The applicability of the obtained formulae to satellites of other planets and to the planets themselves is grounded. Comparing Newton's calculation with our method we reveal the reason, rather convincing, that brings Newton to inadequate result., Comment: 13 pages, 1 figure
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- 2023
3. Effects of the quark flavour thresholds in the hadronic vacuum polarization contributions to the muon anomalous magnetic moment
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Nesterenko, A. V.
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High Energy Physics - Phenomenology - Abstract
The equivalent representations for the hadronic vacuum polarization contributions to the muon anomalous magnetic moment $a^{\text{HVP}}_{\mu}$ in the presence of the quark flavour thresholds are studied. Specifically, the explicit relations between the contributions given by the integration over a finite kinematic interval to $a^{\text{HVP}}_{\mu}$ expressed in terms of the hadronic vacuum polarization function, Adler function, and the $R$-ratio of electron-positron annihilation into hadrons are derived. It is shown that the quark flavour thresholds of the hadronic vacuum polarization function generate additional contributions to $a^{\text{HVP}}_{\mu}$ expressed in terms of the Adler function and the $R$-ratio and the explicit expressions for such contributions are obtained. The commonly employed dispersion relations, which bind together hadronic vacuum polarization function, Adler function, and $R$-ratio, are extended to account for the effects due to the quark flavour thresholds. The examined additional contributions due to the heavy quark thresholds to $a^{\text{HVP}}_{\mu}$ expressed in terms of the $R$-ratio appear to be quite sizable, that can be of a particular relevance for the data-driven method of assessment of the hadronic part of the muon anomalous magnetic moment., Comment: 22 pages, 5 figures
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- 2023
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4. Addendum: Timelike and spacelike kernel functions for the hadronic vacuum polarization contribution to the muon anomalous magnetic moment (2022 J. Phys. G: Nucl. Part. Phys. 49 055001)
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Nesterenko, A. V.
- Subjects
High Energy Physics - Phenomenology - Abstract
This addendum provides results complementary to those obtained in [J. Phys. G49, 055001 (2022)]. Specifically, an equivalent form of the relation, which binds together the "spacelike" kernel functions for the hadronic vacuum polarization contribution to the muon anomalous magnetic moment $a^{\text{HVP}}_{\mu}$, is obtained. It is shown that the infrared limiting value of the "spacelike" and "timelike" kernel functions, which enter the representations for $a^{\text{HVP}}_{\mu}$ involving the Adler function and the $R$-ratio, is identical to the corresponding QED contribution to the muon anomalous magnetic moment of the preceding order in the electromagnetic coupling. The next-to-leading order contributions $a^{\text{HVP}(3b)}_{\mu}$ (which includes the leptonic and hadronic insertions) and $a^{\text{HVP}(3c)}_{\mu}$ (which includes the double hadronic insertion), are studied. The three kernel functions appearing in the representations for $a^{\text{HVP}(3b)}_{\mu}$, which involve the hadronic vacuum polarization function, Adler function, and the $R$-ratio, are presented for the cases of the electron and $\tau$-lepton loop insertions., Comment: 6 pages, 3 figures; v2: minor amendments
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- 2022
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5. The strong coupling constant: State of the art and the decade ahead
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d'Enterria, D., Kluth, S., Zanderighi, G., Ayala, C., Benitez-Rathgeb, M. A., Bluemlein, J., Boito, D., Brambilla, N., Britzger, D., Camarda, S., Cooper-Sarkar, A. M., Cridge, T., Cvetic, G., Brida, M. Dalla, Deur, A., Giuli, F., Golterman, M., Hoang, A. H., Huston, J., Jamin, M., Kotikov, A. V., Krivokhizhin, V. G., Kronfeld, A. S., Leino, V., Lipka, K., Makela, T., Malaescu, B., Maltman, K., Marzani, S., Mateu, V., Moch, S., Monni, P. F., Nadolsky, P., Nason, P., Nesterenko, A. V., Perez-Ramos, R., Peris, S., Petreczky, P., Pich, A., Rabbertz, K., Ramos, A., Reichelt, D., Rodriguez-Sanchez, A., Rojo, J., Saragnese, M., Sawyer, L., Schott, M., Schumann, S., Shaikhatdenov, B. G., Sint, S., Soyez, G., Teca, D., Vairo, A., Vos, M., Waits, C., Weber, J. H., Wobisch, M., and Xie, K.
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High Energy Physics - Phenomenology ,High Energy Physics - Experiment ,High Energy Physics - Lattice - Abstract
This document provides a comprehensive summary of the state-of-the-art, challenges, and prospects in the experimental and theoretical study of the strong coupling $\alpha_s$. The current status of the seven methods presently used to determine $\alpha_s$ based on: (i) lattice QCD, (ii) hadronic $\tau$ decays, (iii) deep-inelastic scattering and parton distribution functions fits, (iv) electroweak boson decays, hadronic final-states in (v) e+e-, (vi) e-p, and (vii) p-p collisions, and (viii) quarkonia decays and masses, are reviewed. Novel $\alpha_s$ determinations are discussed, as well as the averaging method used to obtain the PDG world-average value at the reference Z boson mass scale, $\alpha_s(m^2_Z)$. Each of the extraction methods proposed provides a "wish list" of experimental and theoretical developments required in order to achieve an ideal permille precision on $\alpha_s(m^2_Z)$ within the next 10 years., Comment: 130 pages, 82 figures. White paper submitted to the Energy Frontier "Proceedings of the US Community Study on the Future of Particle Physics" (Snowmass 2021)
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- 2022
6. Mini-Proceedings of the STRONG2020 Virtual Workshop on 'Space-like and Time-like determination of the Hadronic Leading Order contribution to the Muon $g-2$'
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Abbiendi, G., Arbuzov, A., Banerjee, Sw., Biswas, D., Budassi, E., Colangelo, G., Czyż, H., Davier, M., Denig, A., Driutti, A., Engel, T., Gagliardi, G., Hoferichter, M., Ignatov, F., Jadach, S., Komijani, J., Kupść, A., Laporta, S., Lusiani, A., Malaescu, B., Mandal, M. K., Marconi, U., Marinković, M. K., Mattiazzi, L., Müller, S. E., Nesterenko, A. V., Passera, M., Przedzinski, T., Ronca, J., Teubner, T., Bobadilla, W. J. Torres, Venanzoni, G., Was, Z., and Zhou, X.
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High Energy Physics - Phenomenology ,High Energy Physics - Experiment - Abstract
The mini-proceedings of the STRONG2020 Virtual Workshop "Space-like and Time-like determination of the Hadronic Leading Order contribution to the Muon $g-2$", November 24--26 2021, are presented. This is the first workshop of the STRONG2020 WP21: JRA3-PrecisionSM: Precision Tests of the Standard Model (http://www.strong-2020.eu/joint-research-activity/jra3-precisionsm.html). The workshop was devoted to review of the working group activitity on: $(\it i)$ Radiative Corrections and Monte Carlo tools for low-energy hadronic cross sections in $e^+ e^-$ collisions; $(\it ii)$ Annotated database for $e^+e^-$ into hadrons processes at low energy; $(\it iii)$ Radiative Corrections and Monte Carlo tools for $\mu$-$e$ elastic scattering., Comment: 43 pages, 21 contributions. Editors: A. Kup\'s\'c and G. Venanzoni
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- 2022
7. Fabry–Pérot Resonances in Planar Metal–Insulator–Metal Structures for Optical Data Processing: A Review
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Nesterenko, D. V., Hayashi, S., and Soifer, V.
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- 2023
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8. Plasma model and Drude model permittivities in Lifshitz formula
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Nesterenko, V. V.
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Quantum Physics ,Condensed Matter - Statistical Mechanics ,High Energy Physics - Theory - Abstract
At the physical level of rigour it is shown that there are no substantial theoretical arguments in favour of using either plasma mode permittivity or Drude model permittivity in the Lifshitz formula. The decision in this question rests with the comparison of theoretical calculations with the experiment. In the course of the study the derivation of the fluctuation-dissipation theorem is proposed where it is displayed clear at which reasoning stage and in what way the dissipation is taken into account. In particular it is shown how this theorem works in the case of the system with reversible dynamics, that is when dissipation is absent. Thereby it is proved that explicit assertion according to which this theorem is inapplicable to systems without dissipation is erroneous. The research is based on making use of the rigorous formalism of equilibrium two-time Green functions in statistical physics at finite temperature., Comment: 31 pages, 2 figures
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- 2021
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9. Timelike and spacelike kernel functions for the hadronic vacuum polarization contribution to the muon anomalous magnetic moment
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Nesterenko, A. V.
- Subjects
High Energy Physics - Phenomenology ,High Energy Physics - Lattice - Abstract
The complete set of relations, which mutually express the spacelike and timelike kernel functions for the hadronic vacuum polarization contribution to the muon anomalous magnetic moment $a^{\text{HVP}}_{\mu}$ in terms of each other, is obtained. By making use of the derived relations the explicit expression for the next-to-leading order spacelike kernel function, which enters the representation for $a^{\text{HVP}}_{\mu}$ involving the hadronic vacuum polarization function, is obtained. The corresponding next-to-leading order spacelike kernel function, which appears in the representation for $a^{\text{HVP}}_{\mu}$ involving the Adler function, is calculated numerically. The obtained results can be employed in the assessments of the hadronic vacuum polarization contribution to the muon anomalous magnetic moment in the framework of the spacelike methods, such as lattice studies, MUonE project, and others., Comment: 16 pages, 6 figures; v3: minor amendments
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- 2021
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10. The anomalous magnetic moment of the muon in the Standard Model
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Aoyama, T., Asmussen, N., Benayoun, M., Bijnens, J., Blum, T., Bruno, M., Caprini, I., Calame, C. M. Carloni, Cè, M., Colangelo, G., Curciarello, F., Czyż, H., Danilkin, I., Davier, M., Davies, C. T. H., Della Morte, M., Eidelman, S. I., El-Khadra, A. X., Gérardin, A., Giusti, D., Golterman, M., Gottlieb, Steven, Gülpers, V., Hagelstein, F., Hayakawa, M., Herdoíza, G., Hertzog, D. W., Hoecker, A., Hoferichter, M., Hoid, B. -L., Hudspith, R. J., Ignatov, F., Izubuchi, T., Jegerlehner, F., Jin, L., Keshavarzi, A., Kinoshita, T., Kubis, B., Kupich, A., Kupść, A., Laub, L., Lehner, C., Lellouch, L., Logashenko, I., Malaescu, B., Maltman, K., Marinković, M. K., Masjuan, P., Meyer, A. S., Meyer, H. B., Mibe, T., Miura, K., Müller, S. E., Nio, M., Nomura, D., Nyffeler, A., Pascalutsa, V., Passera, M., del Rio, E. Perez, Peris, S., Portelli, A., Procura, M., Redmer, C. F., Roberts, B. L., Sánchez-Puertas, P., Serednyakov, S., Shwartz, B., Simula, S., Stöckinger, D., Stöckinger-Kim, H., Stoffer, P., Teubner, T., Van de Water, R., Vanderhaeghen, M., Venanzoni, G., von Hippel, G., Wittig, H., Zhang, Z., Achasov, M. N., Bashir, A., Cardoso, N., Chakraborty, B., Chao, E. -H., Charles, J., Crivellin, A., Deineka, O., Denig, A., DeTar, C., Dominguez, C. A., Dorokhov, A. E., Druzhinin, V. P., Eichmann, G., Fael, M., Fischer, C. S., Gámiz, E., Gelzer, Z., Green, J. R., Guellati-Khelifa, S., Hatton, D., Hermansson-Truedsson, N., Holz, S., Hörz, B., Knecht, M., Koponen, J., Kronfeld, A. S., Laiho, J., Leupold, S., Mackenzie, P. B., Marciano, W. J., McNeile, C., Mohler, D., Monnard, J., Neil, E. T., Nesterenko, A. V., Ottnad, K., Pauk, V., Radzhabov, A. E., de Rafael, E., Raya, K., Risch, A., Rodríguez-Sánchez, A., Roig, P., José, T. San, Solodov, E. P., Sugar, R., Todyshev, K. Yu., Vainshtein, A., Avilés-Casco, A. Vaquero, Weil, E., Wilhelm, J., Williams, R., and Zhevlakov, A. S.
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High Energy Physics - Phenomenology ,High Energy Physics - Experiment ,High Energy Physics - Lattice ,Nuclear Experiment ,Nuclear Theory - Abstract
We review the present status of the Standard Model calculation of the anomalous magnetic moment of the muon. This is performed in a perturbative expansion in the fine-structure constant $\alpha$ and is broken down into pure QED, electroweak, and hadronic contributions. The pure QED contribution is by far the largest and has been evaluated up to and including $\mathcal{O}(\alpha^5)$ with negligible numerical uncertainty. The electroweak contribution is suppressed by $(m_\mu/M_W)^2$ and only shows up at the level of the seventh significant digit. It has been evaluated up to two loops and is known to better than one percent. Hadronic contributions are the most difficult to calculate and are responsible for almost all of the theoretical uncertainty. The leading hadronic contribution appears at $\mathcal{O}(\alpha^2)$ and is due to hadronic vacuum polarization, whereas at $\mathcal{O}(\alpha^3)$ the hadronic light-by-light scattering contribution appears. Given the low characteristic scale of this observable, these contributions have to be calculated with nonperturbative methods, in particular, dispersion relations and the lattice approach to QCD. The largest part of this review is dedicated to a detailed account of recent efforts to improve the calculation of these two contributions with either a data-driven, dispersive approach, or a first-principle, lattice-QCD approach. The final result reads $a_\mu^\text{SM}=116\,591\,810(43)\times 10^{-11}$ and is smaller than the Brookhaven measurement by 3.7$\sigma$. The experimental uncertainty will soon be reduced by up to a factor four by the new experiment currently running at Fermilab, and also by the future J-PARC experiment. This and the prospects to further reduce the theoretical uncertainty in the near future-which are also discussed here-make this quantity one of the most promising places to look for evidence of new physics., Comment: 196 pages, 103 figures, version published in Phys. Rept., bib files for the citation references are available from: https://muon-gm2-theory.illinois.edu
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- 2020
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11. Recurrent form of the renormalization group relations for the higher-order hadronic vacuum polarization function perturbative expansion coefficients
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Nesterenko, A. V.
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High Energy Physics - Phenomenology ,High Energy Physics - Lattice ,High Energy Physics - Theory - Abstract
The renormalization group relations for the higher-order hadronic vacuum polarization function perturbative expansion coefficients are studied. The folded recurrent and unfolded explicit forms of such relations are obtained. The explicit expression for the coefficients, which incorporate the contributions of the $\pi^{2}$-terms in the perturbative expansion of the R-ratio of electron-positron annihilation into hadrons, is derived at an arbitrary loop level. The obtained results can be employed as an independent crosscheck of the higher-order perturbative calculations of the hadronic vacuum polarization function and in the studies of the renormalization scale setting in the relevant physical observables., Comment: 12 pages
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- 2020
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12. Evaluation of the Influence of the Amplitude of the Second Phase of the Depolarizing Bipolar Half-Sinusoidal Defibrillation Pulse on Its Energy Efficiency
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Gorbunov, B. B., Nesterenko, I. V., and Selishchev, S. V.
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- 2023
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13. Explicit form of the R-ratio of electron-positron annihilation into hadrons
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Nesterenko, A. V.
- Subjects
High Energy Physics - Phenomenology ,High Energy Physics - Experiment - Abstract
The explicit expression for the R-ratio of electron-positron annihilation into hadrons, which properly accounts for all the effects due to continuation of the spacelike perturbative results into the timelike domain, is obtained at an arbitrary loop level. Several equivalent ways to derive a commonly employed approximation of the R-ratio are recapped and the impact of discarded in the latter higher-order pi2-terms on the evaluation of the strong running coupling is elucidated. The obtained results substantially facilitate the theoretical study of electron-positron annihilation into hadrons and the related strong interaction processes., Comment: 21 pages, 2 figures, 1 table
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- 2019
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14. Reforming the Quality Control System of Self-regulatory Audit Organizations in Russia
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Bezdolnaya, Tatiana Yu., Neshchadimova, Tatiana A., Nesterenko, Aleksey V., Puchkova, Yelena M., Nikulina, Olga N., Pisello, Anna Laura, Editorial Board Member, Hawkes, Dean, Editorial Board Member, Bougdah, Hocine, Editorial Board Member, Rosso, Federica, Editorial Board Member, Abdalla, Hassan, Editorial Board Member, Boemi, Sofia-Natalia, Editorial Board Member, Mohareb, Nabil, Editorial Board Member, Mesbah Elkaffas, Saleh, Editorial Board Member, Bozonnet, Emmanuel, Editorial Board Member, Pignatta, Gloria, Editorial Board Member, Mahgoub, Yasser, Editorial Board Member, De Bonis, Luciano, Editorial Board Member, Kostopoulou, Stella, Editorial Board Member, Pradhan, Biswajeet, Editorial Board Member, Abdul Mannan, Md., Editorial Board Member, Alalouch, Chaham, Editorial Board Member, O. Gawad, Iman, Editorial Board Member, Nayyar, Anand, Editorial Board Member, Amer, Mourad, Series Editor, Bogoviz, Aleksei V., editor, and Popkova, Elena G., editor
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- 2022
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15. Nuclear Disaster, Trauma, and the Rituals of Scientific Method
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Ho, Mae-Wan, Nesterenko, Alexey V., Gordon-Lennox, Odile, Saunders, Peter T., and Gordon-Lennox, Jeltje, editor
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- 2022
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16. Calculation of the R-ratio of $e^{+}e^{-}\to$ hadrons at the higher-loop levels
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Nesterenko, A. V.
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High Energy Physics - Phenomenology ,High Energy Physics - Experiment - Abstract
The calculation of the R-ratio of electron-positron annihilation into hadrons is discussed. The method, which enables one to properly account for all the effects due to continuation of the spacelike perturbative results into the timelike domain at an arbitrary loop level, is delineated., Comment: Based on talk given at the 18th Lomonosov Conference on Elementary Particle Physics (24 - 30 August 2017, Moscow, Russia); 7 pages
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- 2018
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17. Combined Vibrator-Slot Radiators in Antenna Arrays
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Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., Dumin, Oleksandr M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Rüdiger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Martín, Ferran, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Speidel, Joachim, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., and Dumin, Oleksandr M.
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- 2020
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18. Ultrawideband Vibrator-Slot Structures
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Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., Dumin, Oleksandr M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Rüdiger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Martín, Ferran, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Speidel, Joachim, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., and Dumin, Oleksandr M.
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- 2020
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19. T-Junctions of Rectangular Waveguides with Vibrator-Slot Structures in Coupling Areas
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Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., Dumin, Oleksandr M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Rüdiger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Martín, Ferran, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Speidel, Joachim, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., and Dumin, Oleksandr M.
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- 2020
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20. Combined Vibrator-Slot Structures Located on a Perfectly Conducting Sphere
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Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., Dumin, Oleksandr M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Rüdiger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Martín, Ferran, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Speidel, Joachim, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., and Dumin, Oleksandr M.
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- 2020
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21. General Issues of the Theory of Thin Impedance Vibrators and Narrow Slots in a Spatial-Frequency Representation
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Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., Dumin, Oleksandr M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Rüdiger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Martín, Ferran, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Speidel, Joachim, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., and Dumin, Oleksandr M.
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- 2020
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22. Waveguide Radiation of the Combined Vibrator-Slot Structures
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Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., Dumin, Oleksandr M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Rüdiger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Martín, Ferran, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Speidel, Joachim, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., and Dumin, Oleksandr M.
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- 2020
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23. Combined Radiating Vibrator-Slot Structures in Rectangular Waveguide
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Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., Dumin, Oleksandr M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Rüdiger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Martín, Ferran, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Speidel, Joachim, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., and Dumin, Oleksandr M.
- Published
- 2020
- Full Text
- View/download PDF
24. Solution of Current Equations for Isolated Vibrator and Slot Scatterers
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Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., Dumin, Oleksandr M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Rüdiger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Martín, Ferran, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Speidel, Joachim, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., and Dumin, Oleksandr M.
- Published
- 2020
- Full Text
- View/download PDF
25. Excitation of Electromagnetic Waves in Volumes with Coordinate Boundaries
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Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., Dumin, Oleksandr M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Rüdiger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Martín, Ferran, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Speidel, Joachim, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Nesterenko, Mikhail V., Katrich, Victor A., Penkin, Yuriy M., Berdnik, Sergey L., and Dumin, Oleksandr M.
- Published
- 2020
- Full Text
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26. Ponderomotive forces in electrodynamics of moving media: The Minkowski and Abraham approaches
- Author
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Nesterenko, V. V. and Nesterenko, A. V.
- Subjects
Physics - Classical Physics ,Condensed Matter - Mesoscale and Nanoscale Physics ,Mathematical Physics - Abstract
In the general setting of the problem, the explicit compact formulae are derived for the ponderomotive forces in the macroscopic electrodynamics of moving media in the Minkowski and Abraham approaches. Taking account of the Minkowski constitutive equations and making use of a special representation for the Abraham energy-momentum tensor enable one to obtain a compact expression for the Abraham force in the case of arbitrary dependence of the medium velocity on spatial coordinates and the time and for nonstationary external electromagnetic field. We term the difference between the ponderomotive forces in the Abraham and Minkowski approaches as the Abraham force not only under consideration of media at rest but also in the case of moving media. The Lorentz force is found which is exerted by external electromagnetic field on the conduction current in a medium, the covariant Ohm law and the constitutive Minkowski relations being taken into account. The physical argumentation is traced for definition of the 4-vector of the ponderomotive force as the 4-divergence of the energy-momentum tensor of electromagnetic field in a medium., Comment: 30 pages, no figures, revtex-4.1, added Ref. [4] and the second paragraph in Introduction; the version published in J. Math. Phys. v. 57, 092902 (2016)
- Published
- 2016
- Full Text
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27. Electron-positron annihilation into hadrons at the higher-loop levels
- Author
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Nesterenko, A. V.
- Subjects
High Energy Physics - Phenomenology ,High Energy Physics - Experiment - Abstract
The strong corrections to the R-ratio of electron-positron annihilation into hadrons are studied at the higher-loop levels. Specifically, the essentials of continuation of the spacelike perturbative results into the timelike domain are elucidated. The derivation of a general form of the commonly employed approximate expression for the R-ratio (which constitutes its truncated re-expansion at high energies) is delineated, the appearance of the pertinent $\pi^2$-terms is expounded, and their basic features are examined. It is demonstrated that the validity range of such approximation is strictly limited to $\sqrt{s}/\Lambda > \exp(\pi/2) \simeq 4.81$ and that it converges rather slowly when the energy scale approaches this value. The spectral function required for the proper calculation of the R-ratio is explicitly derived and its properties at the higher-loop levels are studied. The developed method of calculation of the spectral function enables one to obtain the explicit expression for the latter at an arbitrary loop level. By making use of the derived spectral function the proper expression for the R-ratio is calculated up to the five-loop level and its properties are examined. It is shown that the loop convergence of the proper expression for the R-ratio is better than that of its commonly employed approximation. The impact of the omitted higher-order $\pi^2$-terms on the latter is also discussed., Comment: 21 pages, 8 figures, 4 tables
- Published
- 2017
- Full Text
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28. Dispersive approach to QCD and hadronic contributions to electroweak observables
- Author
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Nesterenko, A. V.
- Subjects
High Energy Physics - Phenomenology ,High Energy Physics - Lattice - Abstract
The dispersive approach to QCD is briefly overviewed and its application to the assessment of hadronic contributions to electroweak observables is discussed., Comment: Talk given at 12th International Conference on Quark Confinement and the Hadron Spectrum, 29 August - 3 September 2016, Thessaloniki, Greece; 10 pages, 3 figures
- Published
- 2017
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29. Implementation of an Innovative Audit Strategy in Human Resources
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Bezdolnaya, Tatiana Y., Nesterenko, Alexey V., Puchkova, Elena M., Nikulina, Olga N., Kutarova, Svetlana V., Kacprzyk, Janusz, Series Editor, Gomide, Fernando, Advisory Editor, Kaynak, Okyay, Advisory Editor, Liu, Derong, Advisory Editor, Pedrycz, Witold, Advisory Editor, Polycarpou, Marios M., Advisory Editor, Rudas, Imre J., Advisory Editor, Wang, Jun, Advisory Editor, and Bogoviz, Aleksei V., editor
- Published
- 2021
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30. Innovative Aspects of Personnel Training for the Agrarian-Oriented Region: Problems and Prospects
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Nesterenko, Alexey V., Bezdolnaya, Tatiana Y., Kushch, Elena N., Ilyasov, Ruslan H., Germanova, Julia I., Kacprzyk, Janusz, Series Editor, Gomide, Fernando, Advisory Editor, Kaynak, Okyay, Advisory Editor, Liu, Derong, Advisory Editor, Pedrycz, Witold, Advisory Editor, Polycarpou, Marios M., Advisory Editor, Rudas, Imre J., Advisory Editor, Wang, Jun, Advisory Editor, and Bogoviz, Aleksei V., editor
- Published
- 2021
- Full Text
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31. Symmetric energy-momentum tensor: The Abraham form and the explicitly covariant formula
- Author
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Nesterenko, V. V. and Nesterenko, A. V.
- Subjects
Physics - Classical Physics - Abstract
We compare the known in literature, explicitly covariant 4-dimensional formula for the symmetric energy-momentum tensor of electromagnetic field in a medium and the energy-momentum tensor derived by Abraham in the 3-dimensional vector form. It is shown that these two objects coincide only on the physical configuration space $\overline\Gamma$, formed by the field vectors and the velocity of the medium, which satisfy the Minkowski constitutive relations. It should be emphasized that the 3-dimensional vector formulae for the components of the energy-momentum tensor were obtained by Abraham only on $\overline\Gamma$, and the task of their extension to the whole unconditional configuration space $\Gamma$ was not posed. In order to accomplish the comparison noted above we derive the covariant formula anew by another method, namely, by generalizing the Abraham reasoning. The comparison conducted enables one to treat the explicitly covariant formula as a unique consistent extension of the Abraham formulae to the whole configuration space $\Gamma$. Thus the question concerning the relativistic covariance of the original 3-dimensional Abraham formulae defined on $\overline\Gamma$ is solved positively. We discuss in detail the relativistic covariance of the 3-dimensional vector formulae for individual components of the 4-dimensional tensors in electrodynamics which is manifested in the form-invariance of these formulae under Lorentz transformations., Comment: 25 pages, no figures, no tables; v3: minor changes, the version published in J. Math. Phys. v. 57, 032901 (2016)
- Published
- 2015
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32. Lindemann–Weierstrass Theorem
- Author
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Nesterenko, Yu. V.
- Published
- 2021
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33. Plasma model and Drude model permittivities in Lifshitz formula
- Author
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Nesterenko, V. V.
- Published
- 2022
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34. Multi-element and Combined Vibrator-Slot Radiators on Spherical Surfaces
- Author
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Penkin, Yuriy M., Katrich, Victor A., Nesterenko, Mikhail V., Berdnik, Sergey L., Dakhov, Victor M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Ruediger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Penkin, Yuriy M., Katrich, Victor A., Nesterenko, Mikhail V., Berdnik, Sergey L., and Dakhov, Victor M.
- Published
- 2019
- Full Text
- View/download PDF
35. Electromagnetic Fields of Dipole Radiators on Spherical Scatterers
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Penkin, Yuriy M., Katrich, Victor A., Nesterenko, Mikhail V., Berdnik, Sergey L., Dakhov, Victor M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Ruediger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Penkin, Yuriy M., Katrich, Victor A., Nesterenko, Mikhail V., Berdnik, Sergey L., and Dakhov, Victor M.
- Published
- 2019
- Full Text
- View/download PDF
36. Electrodynamic Characteristics of Narrow Slots in Spherical Surfaces
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Penkin, Yuriy M., Katrich, Victor A., Nesterenko, Mikhail V., Berdnik, Sergey L., Dakhov, Victor M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Ruediger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Penkin, Yuriy M., Katrich, Victor A., Nesterenko, Mikhail V., Berdnik, Sergey L., and Dakhov, Victor M.
- Published
- 2019
- Full Text
- View/download PDF
37. Electromagnetic Fields of Thin Impedance Vibrator on a Perfectly Conducting Sphere
- Author
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Penkin, Yuriy M., Katrich, Victor A., Nesterenko, Mikhail V., Berdnik, Sergey L., Dakhov, Victor M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Ruediger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Penkin, Yuriy M., Katrich, Victor A., Nesterenko, Mikhail V., Berdnik, Sergey L., and Dakhov, Victor M.
- Published
- 2019
- Full Text
- View/download PDF
38. Green’s Functions for an Infinite Space Outside a Spherical Scatterer
- Author
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Penkin, Yuriy M., Katrich, Victor A., Nesterenko, Mikhail V., Berdnik, Sergey L., Dakhov, Victor M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Ruediger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Penkin, Yuriy M., Katrich, Victor A., Nesterenko, Mikhail V., Berdnik, Sergey L., and Dakhov, Victor M.
- Published
- 2019
- Full Text
- View/download PDF
39. Green’s Functions for Spherical Resonators
- Author
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Penkin, Yuriy M., Katrich, Victor A., Nesterenko, Mikhail V., Berdnik, Sergey L., Dakhov, Victor M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Ruediger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Penkin, Yuriy M., Katrich, Victor A., Nesterenko, Mikhail V., Berdnik, Sergey L., and Dakhov, Victor M.
- Published
- 2019
- Full Text
- View/download PDF
40. Excitation of Electromagnetic Waves in Coordinate Electrodynamic Volumes
- Author
-
Penkin, Yuriy M., Katrich, Victor A., Nesterenko, Mikhail V., Berdnik, Sergey L., Dakhov, Victor M., Angrisani, Leopoldo, Series Editor, Arteaga, Marco, Series Editor, Panigrahi, Bijaya Ketan, Series Editor, Chakraborty, Samarjit, Series Editor, Chen, Jiming, Series Editor, Chen, Shanben, Series Editor, Chen, Tan Kay, Series Editor, Dillmann, Ruediger, Series Editor, Duan, Haibin, Series Editor, Ferrari, Gianluigi, Series Editor, Ferre, Manuel, Series Editor, Hirche, Sandra, Series Editor, Jabbari, Faryar, Series Editor, Jia, Limin, Series Editor, Kacprzyk, Janusz, Series Editor, Khamis, Alaa, Series Editor, Kroeger, Torsten, Series Editor, Liang, Qilian, Series Editor, Ming, Tan Cher, Series Editor, Minker, Wolfgang, Series Editor, Misra, Pradeep, Series Editor, Möller, Sebastian, Series Editor, Mukhopadhyay, Subhas, Series Editor, Ning, Cun-Zheng, Series Editor, Nishida, Toyoaki, Series Editor, Pascucci, Federica, Series Editor, Qin, Yong, Series Editor, Seng, Gan Woon, Series Editor, Veiga, Germano, Series Editor, Wu, Haitao, Series Editor, Zhang, Junjie James, Series Editor, Penkin, Yuriy M., Katrich, Victor A., Nesterenko, Mikhail V., Berdnik, Sergey L., and Dakhov, Victor M.
- Published
- 2019
- Full Text
- View/download PDF
41. Application of integrative information technology in the evaluation processes of research institutions
- Author
-
Nesterenko, Oleksandr V., primary, Polischuk, Valery B., additional, and Zharinov, Serhii S., additional
- Published
- 2024
- Full Text
- View/download PDF
42. Influence of All-Round Forging under Short-Term Creep Conditions on the Structure and Mechanical Properties of the Al7075/10SiCp Composite with an Aluminum Matrix
- Author
-
Kryuchkov, D. I., Nesterenko, A. V., Smirnov, S. V., Pugacheva, N. B., Vichuzhanin, D. I., and Bykova, T. M.
- Published
- 2021
- Full Text
- View/download PDF
43. R-ratio of electron-positron annihilation into hadrons: higher-order pi2-terms
- Author
-
Nesterenko, A. V. and Popov, S. A.
- Subjects
High Energy Physics - Phenomenology - Abstract
High-energy behavior of R-ratio of electron-positron annihilation into hadrons is studied. In particular, it is argued that at any given order of perturbation theory the re-expansion of the R-ratio in the ultraviolet asymptotic can be reduced to the form of power series in the naive continuation of the strong running coupling into the timelike domain. The convergence range of the re-expanded R-ratio and the corresponding higher-order pi2-terms are discussed., Comment: Based on talks given at the 14th Workshop on Nonperturbative QCD (13 - 16 June 2016, Paris, France) and the 19th International QCD Conference (QCD 16) (4 - 8 July 2016, Montpellier, France); 5 pages, 3 figures
- Published
- 2016
- Full Text
- View/download PDF
44. Macroscopic approach to the Casimir friction force
- Author
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Nesterenko, V. V. and Nesterenko, A. V.
- Subjects
Quantum Physics ,Condensed Matter - Mesoscale and Nanoscale Physics - Abstract
The general formula is derived for the vacuum friction force between two parallel perfectly flat planes bounding two material media separated by a vacuum gap and moving relative to each other with a constant velocity $\mathbf{v}$. The material media are described in the framework of macroscopic electrodynamics whereas the nonzero temperature and dissipation are taken into account by making use of the Kubo formulae from non-equilibrium statistical thermodynamics. The formula obtained provides a rigorous basis for calculation of the vacuum friction force within the quantum field theory methods in the condensed matter physics. The revealed $v$-dependence of the vacuum friction force proves to be the following: for zero temperature ($T=0$) it is proportional to $(v/c)^3$ and for $T>0$ this force is linear in $(v/c)$., Comment: 8 pages, no figures, no tables, REVTeX4-1, The paper is considerably extended, new results are obtained, presentation is improved
- Published
- 2014
- Full Text
- View/download PDF
45. Hadronic contributions to electroweak observables in the framework of DPT
- Author
-
Nesterenko, A. V.
- Subjects
High Energy Physics - Phenomenology - Abstract
The hadronic contributions to the muon anomalous magnetic moment and to the shift of the electromagnetic fine structure constant at the scale of Z boson mass are evaluated within dispersively improved perturbation theory (DPT). The latter merges the corresponding perturbative input with intrinsically nonperturbative constraints, which originate in the respective kinematic restrictions. The obtained results conform with recent assessments of the quantities on hand., Comment: Based on talks given at the 6th Workshop "Calculations for Modern and Future Colliders" (23 - 30 July 2015, Dubna, Russia) and the 17th Lomonosov Conference on Elementary Particle Physics (20 - 26 August 2015, Moscow, Russia); 6 pages, 2 figures
- Published
- 2016
- Full Text
- View/download PDF
46. Physiological (Integral) Approach to the Use of Chlorophyll Fluorescence Parameters of Plant Leaves
- Author
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Nesterenko, T. V., Tikhomirov, A. A., and Shikhov, V. N.
- Published
- 2022
- Full Text
- View/download PDF
47. Fano Approximation as a Fast and Effective Way for Estimating Resonance Characteristics of Surface Plasmon Structures
- Author
-
Nesterenko, Dmitry V., Pavelkin, Roman, Hayashi, Shinji, Sekkat, Zouheir, and Soifer, Victor
- Published
- 2021
- Full Text
- View/download PDF
48. Studying the Short-Term High-Temperature Creep in the Al–6Zn–2.5Mg–2Cu/10SiCp Aluminum Matrix Composite
- Author
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Pugacheva, N. B., Kryuchkov, D. I., Nesterenko, A. V., Smirnov, S. V., and Shveikin, V. P.
- Published
- 2021
- Full Text
- View/download PDF
49. Hadronic contributions to electroweak observables within DPT
- Author
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Nesterenko, A. V.
- Subjects
High Energy Physics - Phenomenology ,High Energy Physics - Lattice - Abstract
Dispersive approach to quantum chromodynamics is applied to the assessment of hadronic contributions to electroweak observables. The employed approach merges the corresponding perturbative input with intrinsically nonperturbative constraints, which originate in the respective kinematic restrictions. The evaluated hadronic contributions to the muon anomalous magnetic moment and to the shift of the electromagnetic fine structure constant at the scale of Z boson mass conform with recent assessments of these quantities., Comment: Talk given at 18th International QCD Conference (QCD 15), 29 June - 3 July 2015, Montpellier, France; 5 pages, 3 figures
- Published
- 2015
- Full Text
- View/download PDF
50. Inclusive tau lepton hadronic decay in vector and axial-vector channels within dispersive approach to QCD
- Author
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Nesterenko, A. V.
- Subjects
High Energy Physics - Phenomenology - Abstract
The dispersive approach to QCD, which properly embodies the intrinsically nonperturbative constraints originating in the kinematic restrictions on relevant physical processes and extends the applicability range of perturbation theory towards the infrared domain, is briefly overviewed. The study of OPAL (update 2012) and ALEPH (update 2014) experimental data on inclusive tau lepton hadronic decay in vector and axial-vector channels within dispersive approach is presented., Comment: Talk given at 11th International Conference on Quark Confinement and the Hadron Spectrum, 8 - 12 September 2014, Saint-Petersburg, Russian Federation; 6 pages, 3 figures, 1 table
- Published
- 2015
- Full Text
- View/download PDF
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