高光- x -射线偏振比揭示了星带BL喷流中的康普顿散射

Iván Agudo, Ioannis Liodakis, Jorge Otero-Santos, Riccardo Middei, Alan Marscher, Svetlana Jorstad, Haocheng Zhang, Hui Li, Laura Di Gesu, Roger W. Romani, Dawoon E. Kim, Francesco Fenu, Herman L. Marshall, Luigi Pacciani, Juan Escudero Pedrosa, Francisco José Aceituno, Beatriz Agís-González, Giacomo Bonnoli, Víctor Casanova, Daniel Morcuende, Vilppu Piirola, Alfredo Sota, Pouya M. Kouch, Elina Lindfors, Callum McCall, Helen E. Jermak, Iain A. Steele, George A. Borman, Tatiana S. Grishina, Vladimir A. Hagen-Thorn, Evgenia N. Kopatskaya, Elena G. Larionova, Daria A. Morozova, Sergey S. Savchenko, Ekaterina V. Shishkina, Ivan S. Troitskiy, Yulia V. Troitskaya, Andrey A. Vasilyev, Alexey V. Zhovtan, Ioannis Myserlis, Mark Gurwell, Garrett Keating, Ramprasad Rao, Sincheol Kang, Sang-Sung Lee, Sanghyun Kim, Whee Yeon Cheong, Hyeon-Woo Jeong, Emmanouil Angelakis, Alexander Kraus, Dmitry Blinov, Siddharth Maharana, Rumen Bachev, Jenni Jormanainen, Kari Nilsson, Vandad Fallah Ramazan..
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引用次数: 0

摘要

Blazars是一种超大质量黑洞系统,具有高度相对论性的喷流,与视线对齐,是宇宙中最强大、寿命最长的电磁发射体。我们在这里报道了一个射电到伽马射线的多波长运动,从射电到x射线波长的偏振覆盖是前所未有的。此次观测在2023年11月10日至18日捕捉到了一个非同寻常的事件,当时光学同步辐射的线极化度达到了创纪录的47.5%。与之形成鲜明对比的是,成像x射线偏振探测器发现,x射线(康普顿散射或强子诱导)发射的极化率小于7.4% (3σ置信水平)。我们认为,这一观测结果排除了高能发射的强子起源,而强烈倾向于轻子(康普顿散射)起源,从而打破了BL Lacertae强子和轻子发射模型之间的简并,并证明了多波长偏振法解决这一问题的能力。此外,多波长通量和偏振变异性,具有极其显著的上升和衰减的光偏振度,首次解释了磁“弹簧”的弛豫嵌入在新注入的等离子体。这表明等离子体射流可以保持一个主要的环形磁场成分,远离中央发动机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High Optical-to-X-Ray Polarization Ratio Reveals Compton Scattering in BL Lacertae’s Jet
Blazars, supermassive black hole systems with highly relativistic jets aligned with the line of sight, are the most powerful long-lived emitters of electromagnetic emission in the Universe. We report here on a radio-to-gamma-ray multiwavelength campaign on the blazar BL Lacertae with unprecedented polarimetric coverage from radio to X-ray wavelengths. The observations caught an extraordinary event on 2023 November 10–18, when the degree of linear polarization of optical synchrotron radiation reached a record value of 47.5%. In stark contrast, the Imaging X-ray Polarimetry Explorer found that the X-ray (Compton scattering or hadron-induced) emission was polarized at less than 7.4% (3σ confidence level). We argue here that this observational result rules out a hadronic origin of the high-energy emission and strongly favors a leptonic (Compton scattering) origin, thereby breaking the degeneracy between hadronic and leptonic emission models for BL Lacertae and demonstrating the power of multiwavelength polarimetry to address this question. Furthermore, the multiwavelength flux and polarization variability, featuring an extremely prominent rise and decay of the optical polarization degree, is interpreted for the first time by the relaxation of a magnetic “spring” embedded in the newly injected plasma. This suggests that the plasma jet can maintain a predominant toroidal magnetic field component parsecs away from the central engine.
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