The Vanishing of the Primary Emission Region in PKS 1510–089

F. Aharonian, F. Benkhali, J. Aschersleben, H. Ashkar, Michael Backes, V. B. Martins, J. Barnard, R. Batzofin, Y. Becherini, D. Berge, K. Bernloehr, B. Bi, M. D. B. Lavergne, M. Boettcher, C. Boisson, J. Bolmont, J. Borowska, M. Bouyahiaoui, F. Bradascio, M. Breuhaus, R. Brose, A. Brown, F. Brun, B. Bruno, T. Bulik, C. Burger-Scheidlin, S. Caroff, S. Casanova, R. Cecil, J. Celić, M. Cerruti, T. Chand, S. Chandra, A. Chen, J. Chibueze, O. Chibueze, G. Cotter, J. D. Mbarubucyeye, I. Davids, A. Djannati-Atai, A. Dmytriiev, V. Doroshenko, K. Egberts, S. Einecke, J. Ernenwein, S. Fegan, G. Fontaine, M. Fuessling, S. Funk, S. Gabici, S. Ghafourizadeh, G. Giavitto, D. Glawion, J. Glicenstein, P. Goswami, G. Grolleron, L. Haerer, W. Hofmann, T. Holch, M. Holler, D. Horns, M. Jamrozy, F. Jankowsky, V. Joshi, I. Jung-Richardt, E. Kasai, K. Katarzyski, R. Khatoon, B. Khélifi, W. Klu'zniak, N. Komin, K. Kosack, D. Kostunin, R. G. Lang, S. L. Stum, F. Leitl, A. Lemière, J. Lenain, F. Leuschner, A. Luashvili, J. Mackey
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Abstract

In 2021 July, PKS 1510−089 exhibited a significant flux drop in the high-energy γ-ray (by a factor 10) and optical (by a factor 5) bands and remained in this low state throughout 2022. Similarly, the optical polarization in the source vanished, resulting in the optical spectrum being fully explained through the steady flux of the accretion disk and the broad-line region. Unlike the aforementioned bands, the very-high-energy γ-ray and X-ray fluxes did not exhibit a significant flux drop from year to year. This suggests that the steady-state very-high-energy γ-ray and X-ray fluxes originate from a different emission region than the vanished parts of the high-energy γ-ray and optical jet fluxes. The latter component has disappeared through either a swing of the jet away from the line of sight or a significant drop in the photon production efficiency of the jet close to the black hole. Either change could become visible in high-resolution radio images.
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PKS 1510-089主发射区的消失
在2021年7月,PKS 1510−089在高能γ射线(10倍)和光波段(5倍)表现出明显的通量下降,并在整个2022年保持这种低状态。同样,光源的光偏振消失,使得光谱可以通过吸积盘和宽线区域的稳定通量来充分解释。与上述波段不同的是,高能γ射线和x射线的通量没有明显的逐年下降。这表明,与高能γ射线和光射流的消失部分相比,高能γ射线和x射线的稳态通量来自不同的发射区域。后一分量的消失,要么是由于射流在视线之外的摆动,要么是由于靠近黑洞的射流的光子产生效率显著下降。这两种变化都可以在高分辨率无线电图像中显示出来。
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