4 results on '"Lindert, J.M."'
Search Results
2. Standard Model Physics at the HL-LHC and HE-LHC
- Author
-
Azzi, P., Farry, S., Nason, P., Tricoli, A., Zeppenfeld, D., Abdul Khalek, R., Alimena, J., Andari, N., Aperio Bella, L., Armbruster, A.J., Baglio, J., Bailey, S., Bakos, E., Bakshi, A., Baldenegro, C., Balli, F., Barker, A., Barter, W., de Blas, J., Blekman, F., Bloch, D., Bodek, A., Boonekamp, M., Boos, E., Sola, Bossio, Cadamuro, L., Camarda, S., Campanario, F., Campanelli, M., Campbell, J.M., Cao, Q.-H., Cavaliere, V., Cerri, A., Chahal, G.S., Chargeishvili, B., Charlot, C., Chen, S.-L., Chen, T., Cieri, L., Ciuchini, M., Corcella, G., Cotogno, S., Covarelli, R., Cruz-Martinez, J.M., Czakon, M., Dainese, A., Dang, N.P., Darmé, L., Dawson, S., De La Torre, H., Deile, M., Deliot, F., Demers, S., Denner, A., Derue, F., Di Ciaccio, L., Di Clemente, W.K., Dominguez Damiani, D., Dudko, L., Durglishvili, A., Dünser, M., Ebadi, J., Ferreira De Faria, R.B., Ferrera, G., Ferroglia, A., Figy, T.M., Finelli, K.D., Fiolhais, M.C.N., Franco, E., Frederix, R., Fuks, B., Galhardo, B., Gao, J., Gaunt, J.R., Gehrmann, T., Gehrmann-De Ridder, A., Giljanovic, D., Giuli, F., Glover, E.W.N., Goodsell, M.D., Gouveia, E., Govoni, P., Goy, C., Grazzini, M., Grohsjean, A., Grosse-Oetringhaus, J.F., Gunnellini, P., Gwenlan, C., Harland-Lang, L.A., Harrison, P.F., Heinrich, G., Helsens, C., Herndon, M., Hindrichs, O., Hirschi, V., Hoang, A., Hoepfner, K., Hogan, J.M., Huss, A., Jahn, S., Jain, Sa., Jones, S.P., Jung, A.W., Jung, H., Kallweit, S., Kar, D., Karlberg, A., Kasemets, T., Kerner, M., Khandoga, M.K., Khanpour, H., Khatibi, S., Khukhunaishvili, A., Kieseler, J., Kretzschmar, J., Kroll, J., Kryshen, E., Lang, V.S., Lechner, L., Lee, C.A., Leigh, M., Lelas, D., Les, R., Lewis, I.M., Li, B., Li, Q., Li, Y., Lidrych, J., Ligeti, Z., Lindert, J.M., Liu, Y., Lohwasser, K., Long, K., Lontkovskyi, D., Majumder, G., Mancini, M., Mandrik, P., Mangano, M.L., Marchesini, I., Mayer, C., Mazumdar, K., Mcfayden, J.A., Mendes Amaral Torres Lagarelhos, P.M., Meyer, A.B., Mikhalcov, S., Mishima, S., Mitov, A., Mohammadi Najafabadi, M., Moreno Llácer, M., Mulders, M., Myska, M., Narain, M., Nisati, A., Nitta, T., Onofre, A., Pagan Griso, S., Pagani, D., Palencia Cortezon, E., Papanastasiou, A., Pedro, K., Pellen, M., Perfilov, M., Perrozzi, L., Petersen, B.A., Pierini, M., Pires, J., Pleier, M.-A., Plätzer, S., Potamianos, K., Pozzorini, S., Price, A.C., Rauch, M., Re, E., Reina, L., Reuter, J., Robens, T., Rojo, J., Royon, C., Saito, S., Savin, A., Sawant, S., Schneider, B., Schoefbeck, R., Schoenherr, M., Schäfer-Siebert, H., Seidel, M., Selvaggi, M., Shears, T., Silvestrini, L., Sjodahl, M., Skovpen, K., Smith, N., Spitzbart, D., Starovoitov, P., Suster, C.J.E., Tan, P., Taus, R., Teague, D., Terashi, K., Terron, J., Uplap, S., Veloso, F., Verzetti, M., Vesterinen, M.A., Vladimirov, V.E., Volkov, P., Vorotnikov, G., Vranjes Milosavljevic, M., Vranjes, N., Vryonidou, E., Walker, D., Wiesemann, M., Wu, Y., Xu, T., Yacoob, S., Yazgan, E., Zahreddine, J., Zanderighi, G., Zaro, M., Zenaiev, O., Zevi Della Porta, G., Zhang, C., Zhang, W., Zhu, H.L., Zlebcik, R., Zubair, F.N., Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Institut Pluridisciplinaire Hubert Curien (IPHC), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université de Strasbourg (UNISTRA)-Centre National de la Recherche Scientifique (CNRS), Laboratoire Leprince-Ringuet (LLR), Centre National de la Recherche Scientifique (CNRS)-École polytechnique (X)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3), Laboratoire de Physique Nucléaire et de Hautes Énergies (LPNHE (UMR_7585)), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris Diderot - Paris 7 (UPD7)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS), Laboratoire d'Annecy de Physique des Particules (LAPP), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Savoie Mont Blanc (USMB [Université de Savoie] [Université de Chambéry])-Centre National de la Recherche Scientifique (CNRS), Laboratoire de Physique Théorique et Hautes Energies (LPTHE), Centre National de la Recherche Scientifique (CNRS)-Université Pierre et Marie Curie - Paris 6 (UPMC), Laboratoire d'Annecy-le-Vieux de Physique Théorique (LAPTH), Université Savoie Mont Blanc (USMB [Université de Savoie] [Université de Chambéry])-Centre National de la Recherche Scientifique (CNRS), HL-LHC, HE-LHC Working Group, Université de Strasbourg (UNISTRA)-Université de Haute-Alsace (UHA) Mulhouse - Colmar (Université de Haute-Alsace (UHA))-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-École polytechnique (X)-Centre National de la Recherche Scientifique (CNRS), Université Pierre et Marie Curie - Paris 6 (UPMC)-Centre National de la Recherche Scientifique (CNRS), Dainese, A, Mangano, M, Meyer, AB, Nisati, A, Salam, G, Vesterinen, M, Azzi, P, Farry, S, Nason, P, Tricoli, A, Zeppenfeld, D, Abdul Khalek, R, Alimena, J, Andari, N, Aperio Bella, L, Armbruster, A, Baglio, J, Bailey, S, Bakos, E, Bakshi, A, Baldenegro, C, Balli, F, Barker, A, Barter, W, de Blas, J, Blekman, F, Bloch, D, Bodek, A, Boonekamp, M, Boos, E, Bossio Sola, J, Cadamuro, L, Camarda, S, Campanario, F, Campanelli, M, Campbell, J, Cao, Q, Cavaliere, V, Cerri, A, Chahal, G, Chargeishvili, B, Charlot, C, Chen, S, Chen, T, Cieri, L, Ciuchini, M, Corcella, G, Cotogno, S, Covarelli, R, Cruz-Martinez, J, Czakon, M, Dang, N, Darmé, L, Dawson, S, De la Torre, H, Deile, M, Deliot, F, Demers, S, Denner, A, Derue, F, Di Ciaccio, L, Di Clemente, W, Dominguez Damiani, D, Dudko, L, Durglishvili, A, Dünser, M, Ebadi, J, Ferreira De Faria, R, Ferrera, G, Ferroglia, A, Figy, T, Finelli, K, Fiolhais, M, Franco, E, Frederix, R, Fuks, B, Galhardo, B, Gao, J, Gaunt, J, Gehrmann, T, Gehrmann-De Ridder, A, Giljanovic, D, Giuli, F, Glover, E, Goodsell, M, Gouveia, E, Govoni, P, Goy, C, Grazzini, M, Grohsjean, A, Grosse-Oetringhaus, J, Gunnellini, P, Gwenlan, C, Harland-Lang, L, Harrison, P, Heinrich, G, Helsens, C, Herndon, M, Hindrichs, O, Hirschi, V, Hoang, A, Hoepfner, K, Hogan, J, Huss, A, Jahn, S, Jain, S, Jones, S, Jung, A, Jung, H, Kallweit, S, Kar, D, Karlberg, A, Kasemets, T, Kerner, M, Khandoga, M, Khanpour, H, Khatibi, S, Khukhunaishvili, A, Kieseler, J, Kretzschmar, J, Kroll, J, Kryshen, E, Lang, V, Lechner, L, Lee, C, Leigh, M, Lelas, D, Les, R, Lewis, I, Li, B, Li, Q, Li, Y, Lidrych, J, Ligeti, Z, Lindert, J, Liu, Y, Lohwasser, K, Long, K, Lontkovskyi, D, Majumder, G, Mancini, M, Mandrik, P, Marchesini, I, Mayer, C, Mazumdar, K, Mcfayden, J, Mendes Amaral Torres Lagarelhos, P, Meyer, A, Mikhalcov, S, Mishima, S, Mitov, A, Mohammadi Najafabadi, M, Moreno Llácer, M, Mulders, M, Myska, M, Narain, M, Nitta, T, Onofre, A, Pagan Griso, S, Pagani, D, Palencia Cortezon, E, Papanastasiou, A, Pedro, K, Pellen, M, Perfilov, M, Perrozzi, L, Petersen, B, Pierini, M, Pires, J, Pleier, M, Plätzer, S, Potamianos, K, Pozzorini, S, Price, A, Rauch, M, Re, E, Reina, L, Reuter, J, Robens, T, Rojo, J, Royon, C, Saito, S, Savin, A, Sawant, S, Schneider, B, Schoefbeck, R, Schoenherr, M, Schäfer-Siebert, H, Seidel, M, Selvaggi, M, Shears, T, Silvestrini, L, Sjodahl, M, Skovpen, K, Smith, N, Spitzbart, D, Starovoitov, P, Suster, C, Tan, P, Taus, R, Teague, D, Terashi, K, Terron, J, Uplap, S, Veloso, F, Verzetti, M, Vladimirov, V, Volkov, P, Vorotnikov, G, Vranjes Milosavljevic, M, Vranjes, N, Vryonidou, E, Walker, D, Wiesemann, M, Wu, Y, Xu, T, Yacoob, S, Yazgan, E, Zahreddine, J, Zanderighi, G, Zaro, M, Zenaiev, O, Zevi Della Porta, G, Zhang, C, Zhang, W, Zhu, H, Zlebcik, R, Zubair, F, HEP, INSPIRE, Université de Strasbourg (UNISTRA)-Centre National de la Recherche Scientifique (CNRS), Laboratoire d'Annecy de Physique des Particules (LAPP/Laboratoire d'Annecy-le-Vieux de Physique des Particules), and Centre National de la Recherche Scientifique (CNRS)-Université Savoie Mont Blanc (USMB [Université de Savoie] [Université de Chambéry])-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)
- Subjects
p p: scattering ,[PHYS.HEXP] Physics [physics]/High Energy Physics - Experiment [hep-ex] ,electroweak interaction ,Physics of Elementary Particles and Fields ,CMS ,Physics::Instrumentation and Detectors ,High Energy Physics::Phenomenology ,FOS: Physical sciences ,Standard Model Physics, LHC, HL-LHC, HE-LHC ,ATLAS ,LHC-B ,[PHYS.HPHE] Physics [physics]/High Energy Physics - Phenomenology [hep-ph] ,High Energy Physics - Phenomenology ,High Energy Physics - Phenomenology (hep-ph) ,ALICE ,[PHYS.HPHE]Physics [physics]/High Energy Physics - Phenomenology [hep-ph] ,CERN LHC Coll: upgrade ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,High Energy Physics::Experiment ,flavor: violation ,luminosity: high - Abstract
The successful operation of the Large Hadron Collider (LHC) and the excellent performance of the ATLAS, CMS, LHCb and ALICE detectors in Run-1 and Run-2 with $pp$ collisions at center-of-mass energies of 7, 8 and 13 TeV as well as the giant leap in precision calculations and modeling of fundamental interactions at hadron colliders have allowed an extraordinary breadth of physics studies including precision measurements of a variety physics processes. The LHC results have so far confirmed the validity of the Standard Model of particle physics up to unprecedented energy scales and with great precision in the sectors of strong and electroweak interactions as well as flavour physics, for instance in top quark physics. The upgrade of the LHC to a High Luminosity phase (HL-LHC) at 14 TeV center-of-mass energy with 3 ab$^{-1}$ of integrated luminosity will probe the Standard Model with even greater precision and will extend the sensitivity to possible anomalies in the Standard Model, thanks to a ten-fold larger data set, upgraded detectors and expected improvements in the theoretical understanding. This document summarises the physics reach of the HL-LHC in the realm of strong and electroweak interactions and top quark physics, and provides a glimpse of the potential of a possible further upgrade of the LHC to a 27 TeV $pp$ collider, the High-Energy LHC (HE-LHC), assumed to accumulate an integrated luminosity of 15 ab$^{-1}$., Comment: Report from Working Group 1 on the Physics of the HL-LHC, and Perspectives at the HE-LHC
- Published
- 2019
3. Report from Working Group 1: Standard Model Physics at the HL-LHC and HE-LHC
- Author
-
Azzi, P., Farry, S., Nason, P., Tricoli, A., Zeppenfeld, D., Abdul Khalek, R., Alimena, J., Andari, N., Aperio Bella, L., Armbruster, A.J., Baglio, J., Bailey, S., Bakos, E., Bakshi, A., Baldenegro, C., Balli, F., Barker, A., Barter, W., de Blas, J., Blekman, F., Bloch, D., Bodek, A., Boonekamp, M., Boos, E., Bossio Sola, J.D., Cadamuro, L., Camarda, S., Campanario, F., Campanelli, M., Campbell, J.M., Cao, Q.-H., Cavaliere, V., Cerri, A., Chahal, G.S., Chargeishvili, B., Charlot, C., Chen, S.-L., Chen, T., Cieri, L., Ciuchini, M., Corcella, G., Cotogno, S., Covarelli, R., Cruz-Martinez, J.M., Czakon, M., Dainese, A., Dang, N.P., Darmé, L., Dawson, S., De la Torre, H., Deile, M., Deliot, F., Demers, S., Denner, A., Derue, F., Di Ciaccio, L., Di Clemente, W.K., Dominguez Damiani, D., Dudko, L., Durglishvili, A., Dünser, M., Ebadi, J., Ferreira De Faria, R.B., Ferrera, G., Ferroglia, A., Figy, T.M., Finelli, K.D., Fiolhais, M.C.N., Franco, E., Frederix, R., Fuks, B., Galhardo, B., Gao, J., Gaunt, J.R., Gehrmann, T., Gehrmann-De Ridder, A., Giljanovic, D., Giuli, F., Glover, E.W.N., Goodsell, M.D., Gouveia, E., Govoni, P., Goy, C., Grazzini, M., Grohsjean, A., Grosse-Oetringhaus, J.F., Gunnellini, P., Gwenlan, C., Harland-Lang, L.A., Harrison, P.F., Heinrich, G., Helsens, C., Herndon, M., Hindrichs, O., Hirschi, V., Hoang, A., Hoepfner, K., Hogan, J.M., Huss, A., Jahn, S., Jain, Sa., Jones, S.P., Jung, A.W., Jung, H., Kallweit, S., Kar, D., Karlberg, A., Kasemets, T., Kerner, M., Khandoga, M.K., Khanpour, H., Khatibi, S., Khukhunaishvili, A., Kieseler, J., Kretzschmar, J., Kroll, J., Kryshen, E., Lang, V.S., Lechner, L., Lee, C.A., Leigh, M., Lelas, D., Les, R., Lewis, I.M., Li, B., Li, Q., Li, Y., Lidrych, J., Ligeti, Z., Lindert, J.M., Liu, Y., Lohwasser, K., Long, K., Lontkovskyi, D., Majumder, G., Mancini, M., Mandrik, P., Mangano, M.L., Marchesini, I., Mayer, C., Mazumdar, K., McFayden, J.A., Mendes Amaral Torres Lagarelhos, P.M., Meyer, A.B., Mikhalcov, S., Mishima, S., Mitov, A., Mohammadi Najafabadi, M., Moreno Llácer, M., Mulders, M., Myska, M., Narain, M., Nisati, A., Nitta, T., Onofre, A., Pagan Griso, S., Pagani, D., Palencia Cortezon, E., Papanastasiou, A., Pedro, K., Pellen, M., Perfilov, M., Perrozzi, L., Petersen, B.A., Pierini, M., Pires, J., Pleier, M.-A., Plätzer, S., Potamianos, K., Pozzorini, S., Price, A.C., Rauch, M., Re, E., Reina, L., Reuter, J., Robens, T., Rojo, J., Royon, C., Saito, S., Savin, A., Sawant, S., Schneider, B., Schoefbeck, R., Schoenherr, M., Schäfer-Siebert, H., Seidel, M., Selvaggi, M., Shears, T., Silvestrini, L., Sjodahl, M., Skovpen, K., Smith, N., Spitzbart, D., Starovoitov, P., Suster, C.J.E., Tan, P., Taus, R., Teague, D., Terashi, K., Terron, J., Uplap, S., Veloso, F., Verzetti, M., Vesterinen, M.A., Vladimirov, V.E., Volkov, P., Vorotnikov, G., Vranjes Milosavljevic, M., Vranjes, N., Vryonidou, E., Walker, D., Wiesemann, M., Wu, Y., Xu, T., Yacoob, S., Yazgan, E., Zahreddine, J., Zanderighi, G., Zaro, M., Zenaiev, O., Zevi Della Porta, G., Zhang, C., Zhang, W., Zhu, H.L., Zlebcik, R., and Zubair, F.N.
- Subjects
Physics::Instrumentation and Detectors ,High Energy Physics::Phenomenology ,High Energy Physics::Experiment ,hep-ph ,Particle Physics - Phenomenology - Abstract
The successful operation of the Large Hadron Collider (LHC) and the excellent performance of the ATLAS, CMS, LHCb and ALICE detectors in Run-1 and Run-2 with $pp$ collisions at center-of-mass energies of 7, 8 and 13 TeV as well as the giant leap in precision calculations and modeling of fundamental interactions at hadron colliders have allowed an extraordinary breadth of physics studies including precision measurements of a variety physics processes. The LHC results have so far confirmed the validity of the Standard Model of particle physics up to unprecedented energy scales and with great precision in the sectors of strong and electroweak interactions as well as flavour physics, for instance in top quark physics. The upgrade of the LHC to a High Luminosity phase (HL-LHC) at 14 TeV center-of-mass energy with 3 ab$^{-1}$ of integrated luminosity will probe the Standard Model with even greater precision and will extend the sensitivity to possible anomalies in the Standard Model, thanks to a ten-fold larger data set, upgraded detectors and expected improvements in the theoretical understanding. This document summarises the physics reach of the HL-LHC in the realm of strong and electroweak interactions and top quark physics, and provides a glimpse of the potential of a possible further upgrade of the LHC to a 27 TeV $pp$ collider, the High-Energy LHC (HE-LHC), assumed to accumulate an integrated luminosity of 15 ab$^{-1}$.
- Published
- 2018
4. Beyond the Standard Model phenomena
- Author
-
Golling, T., Hance, M., Harris, P., Mangano, M.L., McCullough, M., Moortgat, F., Schwaller, P., Torre, R., Agrawal, P, Alves, D.S.M., Antusch, S., Arbey, A., Auerbach, B., Bambhaniya, G., Battaglia, M., Bauer, M., Bhupal Dev, P.S., Boveia, A., Bramante, J., Buchmueller, O., Buschmann, M., Chakrabortty, J., Chala, M., Chekanov, S., Chen, C.-Y., Cheng, H.-C., Cirelli, M., Citron, M., Cohen, T., Craig, N., Curtin, D., D'Agnolo, R.T., Doglioni, C., Dror, J.A., du Pree, T., Dylewsky, D., Ellis, J., Ellis, S.A.R., Essig, R., Fan, J.J., Farina, M., Feng, J.L., Fox, P.J., Galloway, J., Giudice, G., Gluza, J., Gori, S., Guha, S., Hahn, K., Han, T., Helsens, C., Henriques, A., Iwamoto, S., Jelinski, T., Jung, S., Kahlhoefer, F., Khoze, V.V., Kim, D., Kopp, J., Kotwal, A., Krämer, M., Lindert, J.M., Liu, J., Lou, H.K., Love, J., Low, M., Machado, P.A.N., Mahmoudi, F., Marrouche, J., Martin, A., Mohan, K., Mohapatra, R.N., Nardini, G., Olive, K.A., Ostdiek, B., Panico, G., Plehn, T., Proudfoot, J., Qian, Z., Reece, M., Rizzo, T., Roskas, C., Ruderman, J., Ruiz, R., Sala, F., Salvioni, E., Saraswat, P., Schell, T., Schmidt-Hoberg, K., Serra, J., Shadmi, Y., Shelton, J., Solans, C., Spannowsky, M., Srivastava, T., Stolarski, D., Szafron, R., Taoso, M., Tarem, S., Thalapillil, A., Thamm, A., Tsai, Y., Verhaaren, C., Vignaroli, N., Walsh, J.R., Wang, L.T., Weiland, C., Wells, J., Williams, C., Wulzer, A., Xue, W., Yu, F., Zheng, B., and Zheng, J.
- Subjects
Physics::Instrumentation and Detectors ,Astrophysics::High Energy Astrophysical Phenomena ,Physics::Accelerator Physics ,High Energy Physics::Experiment ,Particle Physics - Phenomenology - Abstract
This report summarises the physics opportunities in the search and study of physics beyond the Standard Model at a 100 TeV pp collider. This report summarises the physics opportunities in the search and study of physics beyond the Standard Model at a 100 TeV pp collider.
- Published
- 2016
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