Investigation of two Fermi-LAT gamma-ray blazars coincident with high-energy neutrinos detected by IceCube

S. Garrappa,M. Santander,K. Meagher,F. Huang, N. Whitehorn,S. Buson,K. Leonard, J. Kim,G. Yodh,S. Kunwar, G.H. Collin, J. Stettner,J. Micallef,R. Cross,J. Schneider,F. Lauber,E. Bourbeau, P. Backes, B.J.P. Jones,J. Weldert, V. Baum,K.D. de Vries, A. Sandrock, L. Gerhardt,S. Westerhoff,M. Silva,N. Wandkowsky,M. Wallraff, F. Bradascio,M. Huber,K. Mase,M. Meier,S. Sarkar, J. Hignight,S. Blot, M.G. Aartsen, J. Stachurska,H. Pandya, D.F. Cowen, K.B.M. Mahn,T. Palczewski, J. Braun, P. Kalaczynski, R. Nahnhauer,G. Renzi, I.C. Mariş,R. Hoffmann,G.M. Spiczak, M. Labare,S. BenZvi,T.A. Thompson, M. Plum, F. Halzen, T. Glauch,P. Desiati, P. Eller, J.G. Gonzalez,I. Safa,R. Koirala,K. Rawlins,M. Sutherland,A. Stasik, A. Barbano, K. Andeen,L. Schumacher,E. Friedman,J.J. DeLaunay, H. Kolanoski, B. Ty, A. Turcati,M. Song,M. Gündüz, G. Neer, Q.R. Liu,M. Rameez,X.W. Xu,C. De Clercq, S. Meighen-Berger, R. Maunu,T. Anderson,J. Gallagher,M. Hünnefeld,M.J. Larson,C. Haack,K. Hoshina, S. Hickford, R.W. Moore,M. Schaufel,W. Luszczak, A. O'Murchadha, J. Adams, S. Sclafani,C.S. Kochanek, B.J. Whelan, M. Wolf,C. Wendt,D. van Eijk,G. de Wasseige, M. Ahlers, D. Heereman, E. Jacobi,R. Hussain, U. Naumann, D.R. Williams,O. Botner,E. Unger,H. Dembinski,A. Burgman, T. Stezelberger,K. Deoskar,R. Maruyama,G.C. Hill, A. Pizzuto, J.L. Lanfranchi, E. Dvorak,C.J. Lozano Mariscal, T. Ruhe,J. Becker Tjus,M. Börner, D.J. Koskinen, L. Classen,D. Tosi, K. Woschnagg, D.R. Nygren, Z. Griffith, K. Hanson, E. Pinat,K. Clark,C. Finley,E. O'Sullivan,R.G. Stokstad, K. Satalecka, D. Hebecker,Y. Makino,D. Grant, T. Kintscher, D. Chirkin, L. Rauch, M. Medici,C. Argüelles, K. Wiebe, L. Halve, M.J. Weiss,S. Robertson, I.C. Rea,J.C. Dí az-Vélez, W. Rhode, A. Franckowiak,S.C. Nowicki,M. Vraeghe,U. Katz,T. Menne,K. Ghorbani,S. Yoshida, J. Auffenberg,M. Jeong,L. Köpke,J.P. Lazar,H. Niederhausen, P. Schlunder, A. Kyriacou, J. Sandroos, G. Momenté, S. Toscano,J. Felde,K. Hultqvist, T. Karg,J. Bourbeau, J. Kiryluk,A. Kappes,M. Tselengidou, B. Eberhardt, J. Brostean-Kaiser,C. Kopper, K.Z. Stanek, S. Kopper,I. Taboada,C. Bohm, S. Bron, J. Werthebach, T. Meures, R. Bay, B. Relethford, M. Stamatikos, J. Soedingrekso, M. Dunkman, B.J. Shappee,R. Turcotte, A. Steuer, T.W.-S. Holoien,D. Kappesser,P. Nakarmi, K. Filimonov,A. Karle,C. Pérez de los Heros,J.A. Aguilar,A. Goldschmidt, T. Glüsenkamp,M. Moulai,D.V. Pankova,M. Kowalski, S. Fahey, K.D. Hoffman, M. Ackermann,G. Anton,A. Kheirandish,S. Axani, A. Hallgren,J. Wood, R. Snihur, K.-H. Becker,W. Van Driessche, J.J. Beatty, C.F. Turley, S. Mancina, E. Blaufuss,F. Henningsen, M. Ahrens,T. Yuan,D.L. Xu,C. Rott, D. Soldin,A.R. Fazely, T.K. Gaisser, M. Usner,T. Stanev,R. Hellauer,A. Wallace, S. Böser,T.R. Wood,E. Bernardini, L. Tomankova,S. In, D. Altmann,H. Bagherpour, G. Merino,J. van Santen,N. Iovine,D.Z. Besson,T.B. Watson, G. Binder,T. Ehrhardt, D. Berley, J.M. Conrad, T. DeYoung, I. Ansseau,X. Bai, C. Walck, D. Pieloth, T. Montaruli, M. Leuermann, D. Bindig, M. Rongen,S.E. Sanchez Herrera,J.L. Kelley,N. van Eijndhoven, S. Seunarine, S. Miarecki,A. Medina,S. Ter-Antonyan,S.R. Klein, C. Spiering,G.S. Japaridze, N. Kurahashi, K. Helbing, F. Tenholt, M. Kauer,J. Vandenbroucke,S. Vanheule, G.W. Sullivan,P. Correa,L. Lu, A. Terliuk,S. De Ridder, G.T. Przybylski,J.P. Yanez,K. Krings,J. Madsen,M. Karl,P.A. Evenson,A. Schneider,N. Park, T. Kittler, C.H. Wiebusch,L. Wills,R. Nagai, C. Alispach,J.F. Beacom,E. Cheung,Y. Xu,A. Fritz, S. Tilav,W. Kang, J. Lünemann,C. Weaver, S.W. Barwick, C.F. Tung,N.L. Strotjohann, B. Hokanson-Fasig, K. Mallot,T. Schmidt,K. Jero, A. Olivas,P. Dave,S. Dong,P. Coppin, P. Peiffer, D. Rysewyk, D. Ryckbosch,C. Chen, A. Raissi,C. Raab,F. Lucarelli, H. Dujmovic, J.L. Prieto,A. Keivani,N. Kulacz,Unland Elorrieta,P.B. Price,T. Stuttard,M. Richman,E. Resconi,G. Maggi,A. Obertacke Pollmann,A. Ishihara,D. Seckel, H.-P. Bretz,J.P.A.M. de André, T. Hoinka, G. Krückl,R. Reimann,R.S. Busse,T. Carver, E. Lohfink,R. Stein,C. Tönnis,E. Ganster, L. Wille, G. Wrede

arXiv: High Energy Astrophysical Phenomena(2019)

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摘要
Gamma-ray blazars have been suggested as promising contributors to the diffuse flux of high-energy neutrinos detected by IceCube. After the identification of the gamma-ray blazar TXS 0506+056 as the first compelling IceCube neutrino source candidate, a systematic analysis of all high-energy neutrino events satisfying the IceCube realtime trigger criteria was performed. One additional known gamma-ray source, the blazar GB6 J1040+0617, was found to be in spatial coincidence with a neutrino in this sample. The chance probability of this coincidence is 30$%$ after trials correction. For the first time, we present a systematic study of the gamma-ray flux, spectral and optical variability and multi-wavelength behavior of GB6 J1040+0617 and compare it to TXS 0506+056. We discuss a possible source confusion with a new emerging gamma-ray source, the blazar 4C+06.41. We find that TXS 0506+056 shows strong flux variability in the $textit{Fermi}$-LAT gamma-ray band, being in an active state around the arrival of IceCube-170922A, but in a low state during the archival IceCube neutrino flare in 2014/15. In both cases the spectral shape is statistically compatible ($leq 2sigma$) with the average spectrum. Assuming the reported redshift estimate of z=0.73, GB6 J1040+0617 has an average gamma-ray luminosity comparable with that of TXS 0506+056. It shows a bright optical flare recorded by ASAS-SN accompanied by modest gamma-ray activity at the neutrino arrival time. While the association with the neutrino is consistent with background expectations, GB6 J1040+0617 appears to be a plausible neutrino source candidate based on its energetics and multi-wavelength features. Finding one or two neutrinos originating from gamma-ray blazars in the given sample of high-energy neutrinos is consistent with previously derived limits of neutrino emission from gamma-ray blazars.
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