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The Blazar TXS 0506+056 associated with a high-energy neutrino: insights into extragalactic jets and cosmic-ray acceleration

Authors :
M. Makariev
John Hoang
J. Besenrieder
J. Rico
W. Rhode
M. Vazquez Acosta
L. Nogués
J. Kushida
Simona Paiano
D. Hadasch
R. Ch. Berse
Jose Luis Contreras
Abelardo Moralejo
E. Moretti
K. Mielke
P. Da Vela
Ievgen Vovk
Francesco Dazzi
A. Fernández-Barral
M. I. Martínez
Juan Cortina
P. Bangale
A. Hahn
W. Bhattacharyya
K. Pfrang
F. Di Pierro
D. Fidalgo
M. Mariotti
K. Nishijima
G. Pedaletti
V. Moreno
G. Vanzo
S. Gallozzi
Sabrina Einecke
K. Mannheim
T. Saito
D. Dorner
C. Maggio
D. Dominis Prester
Stefano Covino
Matteo Cerruti
Marina Manganaro
Juan Abel Barrio
P. G. Prada Moroni
M. Strzys
S. Lombardi
P. Cumani
Konstancja Satalecka
Michele Doro
J. R. Garcia
P. Peñil
M. Minev
D. Lelas
F. Leone
B. De Lotto
Elisa Prandini
Rodolfo Carosi
Dario Hrupec
R. Paoletti
S. M. Colak
C. Arcaro
M. A. Lopez
M. Peresano
G. Ceribella
A. Niedzwiecki
M. V. Fonseca
Tarek M. Hassan
W. Bednarek
Ana Babić
David Paneque
Ciro Bigongiari
Petar Temnikov
Koji Noda
Elisa Bernardini
Stefano Ansoldi
Fabrizio Tavecchio
I. Šnidarić
Eduardo Colombo
Razmik Mirzoyan
Elina Lindfors
Ll. Font
Markus Gaug
D. Guberman
Daniel Mazin
A. Berti
J. Palacio
Christian Fruck
A. Fattorini
Tomislav Terzić
B. Banerjee
Dorota Sobczyńska
J. M. Paredes
Antonio Stamerra
Y. Iwamura
M. Hayashida
P. Giammaria
R. J. García López
Markus Garczarczyk
Francesco Longo
N. Godinović
Lab Saha
Pierre Colin
Kari Nilsson
G. Maneva
V. Fallah Ramazani
Marc Ribó
Massimo Persic
M. Will
Hidetoshi Kubo
Pratik Majumdar
D. Elsaesser
Jose Carlos Herrera
G. Ferrara
G. Bonnoli
Oscar Blanch
Jordi Delgado
M. Delfino
Julian Sitarek
Masahiro Teshima
T. Schweizer
D. Ninci
Chiara Righi
Satoshi Masuda
Arka Chatterjee
Yusuke Konno
I. Puljak
Laura Maraschi
C. Nigro
Darko Zarić
Luca Foffano
Aaron Dominguez
A. Lamastra
J. E. Ward
Shimpei Tsujimoto
A. Rugliancich
Vitaly Neustroev
Susumu Inoue
N. Torres-Albà
Valerio D'Elia
Dominik Baack
Adrian Biland
Jose Miguel Miranda
Tihomir Surić
Louis Antonelli
A. De Angelis
U. Barres de Almeida
M. Nievas Rosillo
K. Ishio
J. Becerra González
Ansoldi, S.
Antonelli, L. A.
Arcaro, C.
Baack, D.
Babić, A.
Banerjee, B.
Bangale, P.
Barres De Almeida, U.
Barrio, J. A.
González, J. Becerra
Bednarek, W.
Bernardini, E.
Berse, R. Ch.
Berti, A.
Besenrieder, J.
Bhattacharyya, W.
Bigongiari, C.
Biland, A.
Blanch, O.
Bonnoli, G.
Carosi, R.
Ceribella, G.
Chatterjee, A.
Colak, S. M.
Colin, P.
Colombo, E.
Contreras, J. L.
Cortina, J.
Covino, S.
Cumani, P.
D'Elia, V.
Vela, P. Da
Dazzi, F.
Angelis, A. De
Lotto, B. De
Delfino, M.
Delgado, J.
Pierro, F. Di
Domínguez, A.
Prester, D. Domini
Dorner, D.
Doro, M.
Einecke, S.
Elsaesser, D.
Ramazani, V. Fallah
Fattorini, A.
Fernández-Barral, A.
Ferrara, G.
Fidalgo, D.
Foffano, L.
Fonseca, M. V.
Font, L.
Fruck, C.
Gallozzi, S.
López, R. J. García
Garczarczyk, M.
Gaug, M.
Giammaria, P.
Godinović, N.
Guberman, D.
Hadasch, D.
Hahn, A.
Hassan, T.
Hayashida, M.
Herrera, J.
Hoang, J.
Hrupec, D.
Inoue, S.
Ishio, K.
Iwamura, Y.
Konno, Y.
Kubo, H.
Kushida, J.
Lamastra, A.
Lelas, D.
Leone, F.
Lindfors, E.
Lombardi, S.
Longo, F.
López, M.
Maggio, C.
Majumdar, P.
Makariev, M.
Maneva, G.
Manganaro, M.
Mannheim, K.
Maraschi, L.
Mariotti, M.
Martínez, M.
Masuda, S.
Mazin, D.
Mielke, K.
Minev, M.
Miranda, J. M.
Mirzoyan, R.
Moralejo, A.
Moreno, V.
Moretti, E.
Neustroev, V.
Niedzwiecki, A.
Rosillo, M. Nieva
Nigro, C.
Nilsson, K.
Ninci, D.
Nishijima, K.
Noda, K.
Nogués, L.
Paiano, S.
Palacio, J.
Paneque, D.
Paoletti, R.
Paredes, J. M.
Pedaletti, G.
Peñil, P.
Peresano, M.
Persic, M.
Pfrang, K.
Moroni, P. G. Prada
Prandini, E.
Puljak, I.
Garcia, J. R.
Rhode, W.
Ribó, M.
Rico, J.
Righi, C.
Rugliancich, A.
Saha, L.
Saito, T.
Satalecka, K.
Schweizer, T.
Sitarek, J.
Šnidarić, I.
Sobczynska, D.
Stamerra, A.
Strzys, M.
Surić, T.
Tavecchio, F.
Temnikov, P.
Terzić, T.
Teshima, M.
Torres-Albá, N.
Tsujimoto, S.
Vanzo, G.
Acosta, M. Vazquez
Vovk, I.
Ward, J. E.
Will, M.
Zarić, D.
Cerruti, Matteo
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)
MAGIC
Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS)-Université de Paris (UP)
Source :
E-Prints Complutense. Archivo Institucional de la UCM, instname, Astrophys.J., Astrophys.J., 2018, 863, pp.L10. ⟨10.3847/2041-8213/aad083⟩, BASE-Bielefeld Academic Search Engine, The Astrophysical journal letters, The Astrophysical journal letters, Bristol : IOP Publishing, 2018, 863, pp.L10. ⟨10.3847/2041-8213/aad083⟩, E-Prints Complutense: Archivo Institucional de la UCM, Universidad Complutense de Madrid, The Astrophysical journal, The astrophysical journal / 2 863(1), L10 (2018). doi:10.3847/2041-8213/aad083
Publication Year :
2018

Abstract

A neutrino with energy of $\sim$290 TeV, IceCube-170922A, was detected in coincidence with the BL Lac object TXS~0506+056 during enhanced gamma-ray activity, with chance coincidence being rejected at $\sim 3\sigma$ level. We monitored the object in the very-high-energy (VHE) band with the MAGIC telescopes for $\sim$41 hours from 1.3 to 40.4 days after the neutrino detection. Day-timescale variability is clearly resolved. We interpret the quasi-simultaneous neutrino and broadband electromagnetic observations with a novel one-zone lepto-hadronic model, based on interactions of electrons and protons co-accelerated in the jet with external photons originating from a slow-moving plasma sheath surrounding the faster jet spine. We can reproduce the multiwavelength spectra of TXS 0506+056 with neutrino rate and energy compatible with IceCube-170922A, and with plausible values for the jet power of $\sim 10^{45} - 4 \times 10^{46} {\rm erg \ s^{-1}}$. The steep spectrum observed by MAGIC is concordant with internal $\gamma\gamma$ absorption above a few tens of GeV entailed by photohadronic production of a $\sim$290 TeV neutrino, corroborating a genuine connection between the multi-messenger signals. In contrast to previous predictions of predominantly hadronic emission from neutrino sources, the gamma-rays can be mostly ascribed to inverse Compton up-scattering of external photons by accelerated electrons. The X-ray and VHE bands provide crucial constraints on the emission from both accelerated electrons and protons. We infer that the maximum energy of protons in the jet co-moving frame can be in the range $\sim 10^{14}$ to $10^{18}$ eV.<br />Comment: 11 pages, 3 figues, 3 tables, Accepted for publication in ApJL. Major changes in the revised Version: corrected author list

Details

Language :
English
ISSN :
20418205 and 20418213
Database :
OpenAIRE
Journal :
E-Prints Complutense. Archivo Institucional de la UCM, instname, Astrophys.J., Astrophys.J., 2018, 863, pp.L10. ⟨10.3847/2041-8213/aad083⟩, BASE-Bielefeld Academic Search Engine, The Astrophysical journal letters, The Astrophysical journal letters, Bristol : IOP Publishing, 2018, 863, pp.L10. ⟨10.3847/2041-8213/aad083⟩, E-Prints Complutense: Archivo Institucional de la UCM, Universidad Complutense de Madrid, The Astrophysical journal, The astrophysical journal / 2 863(1), L10 (2018). doi:10.3847/2041-8213/aad083
Accession number :
edsair.doi.dedup.....d7f49eb8445876f190401ef71c2fac01
Full Text :
https://doi.org/10.3847/2041-8213/aad083⟩