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Investigating the Blazar TXS 0506+056 through Sharp Multiwavelength Eyes During 2017-2019

Satalecka K; Spolon A; Martinez IJ; Di Venere L; Priyadarshi C; Vovk I; Rosillo MN; Carosi R; Aguilar AM; Batkovic I; Yamamoto T; Bhattacharyya W; Mirzoyan R; Vanzo G; van Scherpenberg J; Hodges M; Pihet M; Bernardini E; Babic A; Sakurai S; Acosta MV; Micanovic S; Busetto G; Maneva G; Paoletti R; Moralejo A; Asano K; Delfino M; Moroni PGP; Berti A; Palatiello M; Kerszberg D; Maggio C; Snidaric I; Nilsson K; Majumdar P; Miceli D; Acciari VA; Jouvin L; Prandini E; Bonnoli G; Herrera J; Molina E; Hahn A; Font L; Dazzi F; Dorner D; Takahashi M; Mannheim K; Tammi J; Green D; Colombo E; Ribo M; Stamerra A; Baack D; Oka T; Lahteenmaki A; Will M; Lombardi S; Nava L; Kushida J; Prester DD; de Almeida UB; Moreno V; Gasparyan S; Fukami S; Fattorini A; Lopez-Moya M; Saito T; Besenrieder J; Hutten M; Puljak I; Fukazawa Y; Godinovic N; Reeves RA; Schmuckermaier F; Di Pierro F; Rico J; Sitarek J; Espineira ED; Mendez CD; Terzic T; Bokenkamp H; Truzzi S; Iwamura Y; Penil P; Hovatta T; Baquero A; Nakamori T; Ventura S; Elsaesser D; Ceribella G; Wunderlich C; Noda K; Schweizer T; Doro M; Ishio K; De Angelis A; Tutone A; Nishijima K; Strzys M; Chilingarian A; Paiano S; Otero-Santos J; Bosnjak Z; Biland A; Linhoff L; Tavecchio F; Paredes JM; Garczarczyk M; Pearson TJ; Jormanainen J; Barrio JA; Martinez M; Green JG; Bernardos M; D'Amico G; Persic M; Ramazani VF; De Lotto B; Saturni FG; Schmidt K; Heckmann L; Vigorito CF; Lopez-Oramas A; Teshima M; Schleicher B; Fraga BMD; Hassan T; Loporchio S; Inada T; Leone F; Takeishi R; Cortina J; Rugliancich A; Rhode W; Marchini A; Miener T; Antonelli LA; Mariotti M; Lopez-Coto R; Bigongiari C; Depaoli D; D'Ammando F; Giordano F; Covino S; Da Vela P; Suda Y; Menchiari S; Readhead ACS; Contreras JL; Cikota S; Mazin D; Temnikov P; Engels AA; Cerruti M; Ansoldi S; Pavletic L; Miranda JM; Longo F; Artero M; Ubach S; Max-Moerbeck W; Viale I; Kubo H; Manganaro M; Hoang J; Donini A; Farina L; Sahakyan N; Liodakis I; Gliwny P; Tornikoski M; Verguilov V; Paneque D; D'Elia V; Del Popolo A; Vitale V; Moretti E; Lamastra A; Makariev M; Suric T; Iotov R; Strom D; Hadasch D; Lelas D; Nigro C; Gaug M; Mallamaci M; Mender S; Aniello T; Ohtani Y; Bednarek W; Zaric D; Blanch O; Giglietto N; Hrupec D; Fruck C; Chai Y; Delgado J; Gonzalez JB; Kiehlmann S; Lindfors E; Morcuende D; Neustroev V; Tosti L; Striskovic J; Nozaki S; Kobayashi Y; Lopez RJG; Righi C; Sobczynska D

Investigating the Blazar TXS 0506+056 through Sharp Multiwavelength Eyes During 2017-2019

Satalecka K
Spolon A
Martinez IJ
Di Venere L
Priyadarshi C
Vovk I
Rosillo MN
Carosi R
Aguilar AM
Batkovic I
Yamamoto T
Bhattacharyya W
Mirzoyan R
Vanzo G
van Scherpenberg J
Hodges M
Pihet M
Bernardini E
Babic A
Sakurai S
Acosta MV
Micanovic S
Busetto G
Maneva G
Paoletti R
Moralejo A
Asano K
Delfino M
Moroni PGP
Berti A
Palatiello M
Kerszberg D
Maggio C
Snidaric I
Nilsson K
Majumdar P
Miceli D
Acciari VA
Jouvin L
Prandini E
Bonnoli G
Herrera J
Molina E
Hahn A
Font L
Dazzi F
Dorner D
Takahashi M
Mannheim K
Tammi J
Green D
Colombo E
Ribo M
Stamerra A
Baack D
Oka T
Lahteenmaki A
Will M
Lombardi S
Nava L
Kushida J
Prester DD
de Almeida UB
Moreno V
Gasparyan S
Fukami S
Fattorini A
Lopez-Moya M
Saito T
Besenrieder J
Hutten M
Puljak I
Fukazawa Y
Godinovic N
Reeves RA
Schmuckermaier F
Di Pierro F
Rico J
Sitarek J
Espineira ED
Mendez CD
Terzic T
Bokenkamp H
Truzzi S
Iwamura Y
Penil P
Hovatta T
Baquero A
Nakamori T
Ventura S
Elsaesser D
Ceribella G
Wunderlich C
Noda K
Schweizer T
Doro M
Ishio K
De Angelis A
Tutone A
Nishijima K
Strzys M
Chilingarian A
Paiano S
Otero-Santos J
Bosnjak Z
Biland A
Linhoff L
Tavecchio F
Paredes JM
Garczarczyk M
Pearson TJ
Jormanainen J
Barrio JA
Martinez M
Green JG
Bernardos M
D'Amico G
Persic M
Ramazani VF
De Lotto B
Saturni FG
Schmidt K
Heckmann L
Vigorito CF
Lopez-Oramas A
Teshima M
Schleicher B
Fraga BMD
Hassan T
Loporchio S
Inada T
Leone F
Takeishi R
Cortina J
Rugliancich A
Rhode W
Marchini A
Miener T
Antonelli LA
Mariotti M
Lopez-Coto R
Bigongiari C
Depaoli D
D'Ammando F
Giordano F
Covino S
Da Vela P
Suda Y
Menchiari S
Readhead ACS
Contreras JL
Cikota S
Mazin D
Temnikov P
Engels AA
Cerruti M
Ansoldi S
Pavletic L
Miranda JM
Longo F
Artero M
Ubach S
Max-Moerbeck W
Viale I
Kubo H
Manganaro M
Hoang J
Donini A
Farina L
Sahakyan N
Liodakis I
Gliwny P
Tornikoski M
Verguilov V
Paneque D
D'Elia V
Del Popolo A
Vitale V
Moretti E
Lamastra A
Makariev M
Suric T
Iotov R
Strom D
Hadasch D
Lelas D
Nigro C
Gaug M
Mallamaci M
Mender S
Aniello T
Ohtani Y
Bednarek W
Zaric D
Blanch O
Giglietto N
Hrupec D
Fruck C
Chai Y
Delgado J
Gonzalez JB
Kiehlmann S
Lindfors E
Morcuende D
Neustroev V
Tosti L
Striskovic J
Nozaki S
Kobayashi Y
Lopez RJG
Righi C
Sobczynska D
Katso/Avaa
Acciari_2022_ApJ_927_197.pdf (1.439Mb)
Lataukset: 

IOP Publishing Ltd
doi:10.3847/1538-4357/ac531d
URI
https://iopscience.iop.org/article/10.3847/1538-4357/ac531d
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Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2022081154319
Tiivistelmä
The blazar TXS 0506+056 got into the spotlight of the astrophysical community in 2017 September, when a high-energy neutrino detected by IceCube (IceCube-170922A) was associated at the 3 sigma level with a gamma-ray flare from this source. This multi-messenger photon-neutrino association remains, as per today, the most significant association ever observed. TXS 0506+056 was a poorly studied object before the IceCube-170922A event. To better characterize its broadband emission, we organized a multiwavelength campaign lasting 16 months (2017 November to 2019 February), covering the radio band (Metsahovi, OVRO), the optical/UV (ASAS-SN, KVA, REM, Swift/UVOT), the X-rays (Swift/XRT, NuSTAR), the high-energy gamma rays (Fermi/LAT), and the very high-energy (VHE) gamma rays (MAGIC). In gamma rays, the behavior of the source was significantly different from the behavior in 2017: MAGIC observations show the presence of flaring activity during 2018 December, while the source only shows an excess at the 4 sigma level during the rest of the campaign (74 hr of accumulated exposure); Fermi/LAT observations show several short (on a timescale of days to a week) flares, different from the long-term brightening of 2017. No significant flares are detected at lower energies. The radio light curve shows an increasing flux trend that is not seen in other wavelengths. We model the multiwavelength spectral energy distributions in a lepto-hadronic scenario, in which the hadronic emission emerges as Bethe-Heitler and pion-decay cascade in the X-rays and VHE gamma rays. According to the model presented here, the 2018 December gamma-ray flare was connected to a neutrino emission that was too brief and not bright enough to be detected by current neutrino instruments.
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