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The Polarized Image of a Synchrotron-emitting Ring of Gas Orbiting a Black Hole

Ramesh NarayanDaniel C. M. PalumboMichael D. JohnsonZachary GellesElizabeth HimwichDominic O. ChangAngelo RicarteJason DexterCharles F. GammieAndrew ChaelKazunori AkiyamaAntxon AlberdiWalter AlefJuan Carlos AlgabaRichard AnantuaKeiichi AsadaRebecca AzulayAnne-Kathrin BaczkoDavid BallMislav BalokovićJohn BarrettBradford A. BensonDan BintleyLindy BlackburnRaymond BlundellWilfred BolandKatherine L. BoumanGeoffrey C. BowerHope BoyceMichael BremerChristiaan D. BrinkerinkRoger BrissendenSilke BritzenAvery E. BroderickDominique BroguiereThomas BronzwaerDo‐Young ByunJohn E. CarlstromChi‐kwan ChanShami ChatterjeeKoushik ChatterjeeMing-Tang ChenYongjun 军 Chen 陈永Paul M. CheslerIlje ChoPierre ChristianJohn E. ConwayJ. M. CordesThomas M. CrawfordGeoffrey B. CrewAlejandro Cruz-OsorioYuzhu CuiJordy DavelaarMariafelicia De LaurentisRoger DeaneJessica DempseyG. DesvignesSheperd S. DoelemanRalph P. EatoughH. FalckeJoseph FarahVincent L. FishE. B. FomalontH. Alyson FordRaquel Fraga-EncinasPer FribergChristian M. FrommAntonio FuentesPeter GalisonRoberto GarcíaOlivier GentazBoris GeorgievC. GoddiRoman GoldJosé L. GómezArturo I. Gómez-RuizMinfeng 峰 Gu 顾敏Mark GurwellKazuhiro HadaDaryl HaggardMichael H. HechtRonald HesperLuis C. 山 Ho 何子Paul HoMareki HonmaChih-Wei L. HuangLei 磊 Huang 黄David H. HughesShiro IkedaMakoto InoueSara IssaounDavid J. JamesBuell T. JannuziMichael JanssenBritton JeterWu 悟 Jiang 江Alejandra Jimenez-RosalesSvetlana G. JorstadTaehyun JungMansour Karami
2021en
ABI

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Abstract Synchrotron radiation from hot gas near a black hole results in a polarized image. The image polarization is determined by effects including the orientation of the magnetic field in the emitting region, relativistic motion of the gas, strong gravitational lensing by the black hole, and parallel transport in the curved spacetime. We explore these effects using a simple model of an axisymmetric, equatorial accretion disk around a Schwarzschild black hole. By using an approximate expression for the null geodesics derived by Beloborodov and conservation of the Walker–Penrose constant, we provide analytic estimates for the image polarization. We test this model using currently favored general relativistic magnetohydrodynamic simulations of M87*, using ring parameters given by the simulations. For a subset of these with modest Faraday effects, we show that the ring model broadly reproduces the polarimetric image morphology. Our model also predicts the polarization evolution for compact flaring regions, such as those observed from Sgr A* with GRAVITY. With suitably chosen parameters, our simple model can reproduce the EVPA pattern and relative polarized intensity in Event Horizon Telescope images of M87*. Under the physically motivated assumption that the magnetic field trails the fluid velocity, this comparison is consistent with the clockwise rotation inferred from total intensity images.

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