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Determining the origin of the X-ray emission in blazars through multiwavelength polarization

Liodakis, Ioannis; Zhang, Haocheng; Boula, Stella; Middei, Riccardo; Otero-Santos, Jorge; Blinov, Dmitry; Agudo, Ivan; Boettcher, Markus; Chen, Chien-Ting; Ehlert, Steven R.; Jorstad, Svetlana G.; Kaaret, Philip; Krawczynski, Henric; Peirson, Abel L.; Romani, Roger W.; Tavecchio, Fabrizio; Weisskopf, Martin C.; Kouch, Pouya M.; Lindfors, Elina; Nilsson, Kari; McCall, Callum; Jermak, Helen E.; Steele, Iain A.; Myserlis, Ioannis; Gurwell, Mark; Keating, Garrett K.; Rao, Ramprasad; Kang, Sincheol; Lee, Sang-Sung; Kim, Sanghyun; Yeon Cheong, Whee; Jeong, Hyeon-Woo; Angelakis, Emmanouil; Kraus, Alexander; Jose Aceituno, Francisco; Bonnoli, Giacomo; Casanova, Victor; Escudero, Juan; Agis-Gonzalez, Beatriz; Morcuende, Daniel; Sota, Alfredo; Bachev, Rumen; Grishina, Tatiana S.; Kopatskaya, Evgenia N.; Larionova, Elena G.; Morozova, Daria A.; Savchenko, Sergey S.; Shishkina, Ekaterina V.; Troitskiy, Ivan S.; Troitskaya, Yulia V.; Vasilyev, Andrey A.

Determining the origin of the X-ray emission in blazars through multiwavelength polarization

Liodakis, Ioannis
Zhang, Haocheng
Boula, Stella
Middei, Riccardo
Otero-Santos, Jorge
Blinov, Dmitry
Agudo, Ivan
Boettcher, Markus
Chen, Chien-Ting
Ehlert, Steven R.
Jorstad, Svetlana G.
Kaaret, Philip
Krawczynski, Henric
Peirson, Abel L.
Romani, Roger W.
Tavecchio, Fabrizio
Weisskopf, Martin C.
Kouch, Pouya M.
Lindfors, Elina
Nilsson, Kari
McCall, Callum
Jermak, Helen E.
Steele, Iain A.
Myserlis, Ioannis
Gurwell, Mark
Keating, Garrett K.
Rao, Ramprasad
Kang, Sincheol
Lee, Sang-Sung
Kim, Sanghyun
Yeon Cheong, Whee
Jeong, Hyeon-Woo
Angelakis, Emmanouil
Kraus, Alexander
Jose Aceituno, Francisco
Bonnoli, Giacomo
Casanova, Victor
Escudero, Juan
Agis-Gonzalez, Beatriz
Morcuende, Daniel
Sota, Alfredo
Bachev, Rumen
Grishina, Tatiana S.
Kopatskaya, Evgenia N.
Larionova, Elena G.
Morozova, Daria A.
Savchenko, Sergey S.
Shishkina, Ekaterina V.
Troitskiy, Ivan S.
Troitskaya, Yulia V.
Vasilyev, Andrey A.
Katso/Avaa
aa54747-25.pdf (2.370Mb)
Lataukset: 

EDP Sciences
doi:10.1051/0004-6361/202554747
URI
https://doi.org/10.1051/0004-6361/202554747
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Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2025082789484
Tiivistelmä
The origin of the high-energy emission in astrophysical jets from black holes is a highly debated issue. This is particularly true for jets from supermassive black holes, which are among the most powerful particle accelerators in the Universe. So far, the addition of new observations and new messengers have only managed to create more questions than answers. However, the newly available X-ray polarization observations promise to finally distinguish between emission models. We use extensive multiwavelength and polarization campaigns as well as state-of-the-art polarized spectral energy distribution models to attack this problem by focusing on two X-ray polarization observations of blazar BL Lacertae in flaring and quiescent gamma-ray states. We find that, regardless of the jet composition and underlying emission model, inverse-Compton scattering from relativistic electrons dominates at X-ray energies.
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