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First M87 Event Horizon Telescope Results. VI. The Shadow and Mass of the Central Black Hole

Author(s)
Akiyama, KazunoriAlberdi, AntxonAlef, WalterAsada, KeiichiAzulay, RebeccaBaczko, Anne-KathrinBall, DavidBalokovic, MislavBarrett, JohnBintley, DanBlackburn, LindyBoland, WilfredBouman, Katherine L.Bower, Geoffrey C.Bremer, MichaelBrinkerink, Christiaan D.Brissenden, RogerBritzen, SilkeBroderick, Avery E.Broguiere, DominiqueBronzwaer, ThomasByun, Do-YoungCarlstrom, John E.Chael, AndrewChan, Chi-KwanChatterjee, ShamiChatterjee, KoushikChen, Ming-TangChen, YongjunCho, IljeChristian, PierreConway, John E.Cordes, James M.Crew, Geoffrey B.Cui, YuzhuDavelaar, JordyDe Laurentis, MariafeliciaDeane, RogerDempsey, JessicaDesvignes, GregoryDexter, JasonDoeleman, Sheperd S.Eatough, Ralph P.Falcke, HeinoFish, Vincent L.Fomalont, EdFraga-Encinas, RaquelFriberg, PerFromm, Christian M.Gomez, Jose L.Galison, PeterGammie, Charles F.Garcia, RobertoGentaz, OlivierGeorgiev, BorisGoddi, CiriacoGold, RomanGu, MinfengGurwell, MarkHada, KazuhiroHecht, Michael H.Hesper, RonaldHo, Luis C.Ho, PaulHonma, MarekiHuang, Chih-Wei L.Huang, LeiHughes, David H.Ikeda, ShiroInoue, MakotoIssaoun, SaraJames, David J.Jannuzi, Buell T.Janssen, MichaelJeter, BrittonJiang, WuJohnson, Michael D.Jorstad, SvetlanaJung, TaehyunKarami, MansourKaruppusamy, RameshKawashima, TomohisaKeating, Garrett K.Kettenis, MarkKim, Jae-YoungKim, JunhanKim, JongsooKino, MotokiKoay, Jun YiKoch, Patrick M.Koyama, ShokoKramer, MichaelKramer, CarstenKrichbaum, Thomas P.Kuo, Cheng-YuLauer, Tod R.Lee, Sang-SungLi, Yan-RongLi, ZhiyuanLindqvist, MichaelLiu, KuoLiuzzo, ElisabettaLo, Wen-PingLobanov, Andrei P.Loinard, LaurentLonsdale, ColinLu, Ru-SenMacDonald, Nicholas R.Mao, JirongMarkoff, SeraMarrone, Daniel P.Marscher, Alan P.Marti-Vidal, IvanMatsushita, SatokiMatthews, Lynn D.Medeiros, LiaMenten, Karl M.Mizuno, YosukeMizuno, IzumiMoran, James M.Moriyama, KotaroMoscibrodzka, MonikaMueller, CorneliaNagai, HiroshiNagar, Neil M.Nakamura, MasanoriNarayan, RameshNarayanan, GopalNatarajan, IniyanNeri, RobertoNi, ChunchongNoutsos, AristeidisOkino, HirokiOlivares, HectorOyama, TomoakiOzel, FeryalPalumbo, Daniel C. M.Patel, NimeshPen, Ue-LiPesce, Dominic W.Pietu, VincentPlambeck, RichardPopStefanija, AleksandarPorth, OliverPrather, BenPreciado-Lopez, Jorge A.Psaltis, DimitriosPu, Hung-YiRamakrishnan, VenkatesshRao, RamprasadRawlings, Mark G.Raymond, Alexander W.Rezzolla, LucianoRipperda, BartRoelofs, FreekRogers, AlanRos, EduardoRose, MelRoshanineshat, ArashRottmann, HelgeRoy, Alan L.Ruszczyk, ChetRyan, Benjamin R.Rygl, Kazi L. J.Sanchez, SalvadorSanchez-Arguelles, DavidSasada, MahitoSavolainen, TuomasSchloerb, F. PeterSchuster, Karl-FriedrichShao, LijingShen, ZhiqiangSmall, DesSohn, Bong WonSooHoo, JasonTazaki, FumieTiede, PaulTilanus, Remo P. J.Titus, MichaelToma, KenjiTorne, PabloTrent, TylerTrippe, SaschaTsuda, Shuichirovan Bemmel, Ilsevan Langevelde, Huib Janvan Rossum, Daniel R.Wagner, JanWardle, JohnWeintroub, JonathanWex, NorbertWharton, RobertWielgus, MaciekWong, George N.Wu, QingwenYoung, AndreYoung, KenYounsi, ZiriYuan, FengYuan, Ye-FeiZensus, J. AntonZhao, GuangyaoZhao, Shan-ShanZhu, ZiyanFarah, Joseph R.Meyer-Zhao, ZhengMichalik, DanielNadolski, AndrewNishioka, HiroakiPradel, NicolasPrimiani, Rurik A.Souccar, KamalVertatschitsch, LauraYamaguchi, Paul
Issued Date
2019-04
DOI
10.3847/2041-8213/ab1141
URI
https://scholarworks.unist.ac.kr/handle/201301/83929
Citation
ASTROPHYSICAL JOURNAL LETTERS, v.875, no.1, pp.L6
Abstract
We present measurements of the properties of the central radio source in M87 using Event Horizon Telescope data obtained during the 2017 campaign. We develop and fit geometric crescent models (asymmetric rings with interior brightness depressions) using two independent sampling algorithms that consider distinct representations of the visibility data. We show that the crescent family of models is statistically preferred over other comparably complex geometric models that we explore. We calibrate the geometric model parameters using general relativistic magnetohydrodynamic (GRMHD) models of the emission region and estimate physical properties of the source. We further fit images generated from GRMHD models directly to the data. We compare the derived emission region and black hole parameters from these analyses with those recovered from reconstructed images. There is a remarkable consistency among all methods and data sets. We find that >50% of the total flux at arcsecond scales comes from near the horizon, and that the emission is dramatically suppressed interior to this region by a factor >10, providing direct evidence of the predicted shadow of a black hole. Across all methods, we measure a crescent diameter of 42 +/- 3 mu as and constrain its fractional width to be <0.5. Associating the crescent feature with the emission surrounding the black hole shadow, we infer an angular gravitational radius of GM/Dc(2) = 3.8 +/- 0.4 mu as. Folding in a distance measurement of 16.8(-0.7)(+0.8) gives a black hole mass of M = 6.5. 0.2 vertical bar(stat) +/- 0.7 vertical bar(sys) x 10(9) M-circle dot. This measurement from lensed emission near the event horizon is consistent with the presence of a central Kerr black hole, as predicted by the general theory of relativity.
Publisher
IOP PUBLISHING LTD
ISSN
2041-8205
Keyword (Author)
galaxies: individual (M87)gravitationtechniques: high angular resolutiontechniques: interferometricblack hole physics
Keyword
DIFFERENTIAL EVOLUTIONGENETIC ALGORITHMACCRETION DISKSINNER JETRADIO JETNUCLEUSGALAXYDISTRIBUTIONSEMISSIONDISTANCE

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