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Kim, Jae-Young
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First M87 Event Horizon Telescope Results. VIII. Magnetic Field Structure near The Event Horizon

Author(s)
Akiyama, KazunoriAlgaba, Juan CarlosAlberdi, AntxonAlef, WalterAnantua, RichardAsada, KeiichiAzulay, RebeccaBaczko, Anne-KathrinBall, DavidBalokovic, MislavBarrett, JohnBenson, Bradford A.Bintley, DanBlackburn, LindyBlundell, RaymondBoland, WilfredBouman, Katherine L.Bower, Geoffrey C.Boyce, HopeBremer, MichaelBrinkerink, Christiaan D.Brissenden, RogerBritzen, SilkeBroderick, Avery E.Broguiere, DominiqueBronzwaer, ThomasByun, Do-YoungCarlstrom, John E.Chael, AndrewChan, Chi-kwanChatterjee, ShamiChatterjee, KoushikChen, Ming-TangChen, YongjunChesler, Paul M.Cho, IljeChristian, PierreConway, John E.Cordes, James M.Crawford, Thomas M.Crew, Geoffrey B.Cruz-Osorio, AlejandroCui, YuzhuDavelaar, JordyDe Laurentis, MariafeliciaDeane, RogerDempsey, JessicaDesvignes, GregoryDexter, JasonDoeleman, Sheperd S.Eatough, Ralph P.Falcke, HeinoFarah, JosephFish, Vincent L.Fomalont, EdFord, H. AlysonFraga-Encinas, RaquelFriberg, PerFromm, Christian M.Fuentes, AntonioGalison, PeterGammie, Charles F.Garcia, RobertoGelles, ZacharyGentaz, OlivierGeorgiev, BorisGoddi, CiriacoGold, RomanGomez, Jose L.Gomez-Ruiz, Arturo, IGu, MinfengGurwell, MarkHada, KazuhiroHaggard, DarylHecht, Michael H.Hesper, RonaldHimwich, ElizabethHo, Luis C.Ho, PaulHonma, MarekiHuang, Chih-Wei L.Huang, LeiHughes, David H.Ikeda, ShiroInoue, MakotoIssaoun, SaraJames, David J.Jannuzi, Buell T.Janssen, MichaelJeter, BrittonJiang, WuJimenez-Rosales, AlejandraJohnson, Michael D.Jorstad, SvetlanaJung, TaehyunKarami, MansourKaruppusamy, RameshKawashima, TomohisaKeating, Garrett K.Kettenis, MarkKim, Dong-JinKim, Jae-YoungKim, JongsooKim, JunhanKino, MotokiKoay, Jun YiKofuji, YutaroKoch, Patrick M.Koyama, ShokoKramer, MichaelKramer, CarstenKrichbaum, Thomas P.Kuo, Cheng-YuLauer, Tod R.Lee, Sang-SungLevis, AviadLi, Yan-RongLi, ZhiyuanLindqvist, MichaelLico, RoccoLindahl, GregLiu, JunLiu, KuoLiuzzo, ElisabettaLo, Wen-PingLobanov, Andrei P.Loinard, LaurentLonsdale, ColinLu, Ru-SenMacDonald, Nicholas R.Mao, JirongMarchili, NicolaMarkoff, SeraMarrone, Daniel P.Marscher, Alan P.Marti-Vidal, IvanMatsushita, SatokiMatthews, Lynn D.Medeiros, LiaMenten, Karl M.Mizuno, IzumiMizuno, YosukeMoran, James M.Moriyama, KotaroMoscibrodzka, MonikaMueller, CorneliaMusoke, GibwaMejias, Alejandro MusMichalik, DanielNadolski, AndrewNagai, HiroshiNagar, Neil M.Nakamura, MasanoriNarayan, RameshNarayanan, GopalNatarajan, IniyanNathanail, AntoniosNeilsen, JoeyNeri, RobertoNi, ChunchongNoutsos, AristeidisNowak, Michael A.Okino, HirokiOlivares, HectorOrtiz-Leon, Gisela N.Oyama, TomoakiOze, FeryalPalumbo, Daniel C. M.Park, JonghoPatel, NimeshPen, Ue-LiPesce, Dominic W.Pietu, VincentPlambeck, RichardPopStefanija, AleksandarPorth, OliverPoetzl, Felix M.Prather, BenPreciado-Lopez, Jorge A.Psaltis, DimitriosPu, Hung-YiRamakrishnan, VenkatesshRao, RamprasadRawlings, Mark G.Raymond, Alexander W.Rezzolla, LucianoRicarte, AngeloRipperda, BartRoelofs, FreekRogers, AlanRos, EduardoRose, MelRoshanineshat, ArashRottmann, HelgeRoy, Alan L.Ruszczyk, ChetRygl, Kazi L. J.Sanchez, SalvadorSanchez-Arguelles, DavidSasada, MahitoSavolainen, TuomasSchloerb, F. PeterSchuster, Karl-FriedrichShao, LijingShen, ZhiqiangSmall, DesSohn, Bong WonSooHoo, JasonSun, HeTazaki, FumieTetarenko, Alexandra J.Tiede, PaulTilanus, Remo P. J.Titus, MichaelToma, KenjiTorne, PabloTrent, TylerTraianou, EfthaliaTrippe, Saschavan Bemmel, Ilsevan Langevelde, Huib Janvan Rossum, Daniel R.Wagner, JanWard-Thompson, DerekWardle, JohnWeintroub, JonathanWex, NorbertWharton, RobertWielgus, MaciekWong, George N.Wu, QingwenYoon, DoosooYoung, AndreYoung, KenYounsi, ZiriYuan, FengYuan, Ye-FeiZensus, J. AntonZhao, Guang-YaoZhao, Shan-Shan
Issued Date
2021-03
DOI
10.3847/2041-8213/abe4de
URI
https://scholarworks.unist.ac.kr/handle/201301/83812
Citation
ASTROPHYSICAL JOURNAL LETTERS, v.910, no.1, pp.L13
Abstract
Event Horizon Telescope (EHT) observations at 230 GHz have now imaged polarized emission around the supermassive black hole in M87 on event-horizon scales. This polarized synchrotron radiation probes the structure of magnetic fields and the plasma properties near the black hole. Here we compare the resolved polarization structure observed by the EHT, along with simultaneous unresolved observations with the Atacama Large Millimeter/submillimeter Array, to expectations from theoretical models. The low fractional linear polarization in the resolved image suggests that the polarization is scrambled on scales smaller than the EHT beam, which we attribute to Faraday rotation internal to the emission region. We estimate the average density n(e) similar to 10(4-7) cm(-3), magnetic field strength B similar to 1-30 G, and electron temperature T-e similar to (1-12) x 10(10) K of the radiating plasma in a simple one-zone emission model. We show that the net azimuthal linear polarization pattern may result from organized, poloidal magnetic fields in the emission region. In a quantitative comparison with a large library of simulated polarimetric images from general relativistic magnetohydrodynamic (GRMHD) simulations, we identify a subset of physical models that can explain critical features of the polarimetric EHT observations while producing a relativistic jet of sufficient power. The consistent GRMHD models are all of magnetically arrested accretion disks, where near-horizon magnetic fields are dynamically important. We use the models to infer a mass accretion rate onto the black hole in M87 of (3-20) x 10(-4) M yr(-1).
Publisher
IOP Publishing Ltd
ISSN
2041-8205
Keyword (Author)
Black holesAccretionEvent horizonsJetsKerr black holesMagnetic fieldsMagnetohydrodynamicsPlasma astrophysicsPolarimetryRadiative transferRadio jetsRelativistic jets
Keyword
NONTHERMAL ELECTRONSCIRCULAR-POLARIZATIONPARTICLE-ACCELERATIONSYNCHROTRON EMISSIONSAGITTARIUS-A-ASTERISKADVECTION-DOMINATED ACCRETIONRELATIVISTIC MAGNETOHYDRODYNAMIC SIMULATIONSSUPERMASSIVE BLACK-HOLEGRMHD SIMULATIONSFARADAY-ROTATION

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