Scinovex
article Open AccessTop 1% cited

First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole

The Astrophysical Journal Letters · 2019 · Vol. 875(1) · pp. L1–L1
Kazunori AkiyamaA. AlberdiW. AlefKeiichi AsadaRebecca AzulayAnne-Kathrin BaczkoDavid BallMislav BalokovićJohn BarrettDan BintleyLindy BlackburnW. BolandKatherine L. BoumanGeoffrey C. BowerMichael BremerChristiaan D. BrinkerinkRoger BrissendenS. BritzenAvery E. BroderickDominique BroguièreThomas BronzwaerDo‐Young ByunJ. E. CarlstromAndrew ChaelChi‐kwan ChanShami ChatterjeeKoushik ChatterjeeMing‐Tang ChenXiaopeng ChengIlje ChoPierre ChristianJ. E. ConwayJ. M. CordesG. CrewYuzhu CuiJordy DavelaarMariafelicia De LaurentisRoger DeaneJessica DempseyG. DesvignesJason DexterSheperd S. DoelemanRalph P. EatoughH. FalckeVincent L. FishEd FomalontRaquel Fraga-EncinasWilliam T. FreemanPer FribergChristian M. FrommJosé L. GómezPeter GalisonCharles F. GammieRoberto GarcíaOlivier GentazBoris GeorgievC. GoddiRoman GoldMinfeng GuMark GurwellKazuhiro HadaM. H. HechtRonald HesperLuis C. HoPaul T. P. HoMareki HonmaChih-Wei L. HuangLei 磊 Huang 黄D. H. HughesShiro IkedaMakoto InoueSara IssaounD. J. JamesBuell T. JannuziMichaël JanssenBritton JeterWu JiangMichael D. JohnsonSvetlana G. JorstadTaehyun JungMansour KaramiR. KaruppusamyTomohisa KawashimaGarrett K. KeatingMark KettenisJae-Young KimJunhan KimJongsoo KimMotoki KinoJun Yi KoayPatrick M. KochShoko KoyamaM. KrämerC. KrämerT. P. KrichbaumCheng‐Yu KuoTod R. LauerSang-Sung LeeYan-Rong LiZhiyuan 志远 Li 李M. LindqvistKuo LiuElisabetta LiuzzoWen-Ping LoA. P. LobanovLaurent LoinardC. J. LonsdaleRu-Sen LuNicholas R. MacDonaldJirong 基荣 Mao 毛Sera MarkoffDaniel P. MarroneAlan P. MarscherI. Martí‐VidalSatoki MatsushitaLynn D. MatthewsLia MedeirosK. M. MentenYosuke MizunoIzumi MizunoJ. M. MoranKotaro MoriyamaMonika MościbrodzkaCornelia MüllerHiroshi NagaiNeil M. NagarMasanori NakamuraRamesh NarayanGopal NarayananIniyan NatarajanR. NeriChunchong NiA. NoutsosHiroki OkinoHéctor OlivaresGisela N. Ortiz-LeónTomoaki OyamaFeryal ÖzelDaniel C. M. PalumboNimesh PatelUe‐Li PenDominic W. PesceVincent PiétuR. L. PlambeckAleksandar PopStefanijaOliver PorthBen PratherJorge A. Preciado-LópezDimitrios PsaltisHung-Yi PuVenkatessh RamakrishnanRamprasad RaoMark G. RawlingsAlexander W. RaymondLuciano RezzollaBart RipperdaFreek RoelofsA. E. E. RogersE. RosMel RoseArash RoshanineshatHelge RottmannA. L. RoyChet RuszczykBenjamin R. RyanK. L. J. RyglSalvador SánchezDavid Sánchez-ArgüellesMahito SasadaT. SavolainenF. Peter SchloerbK. SchüsterLijing ShaoZhi-Qiang ShenDes SmallBong Won SohnJason SoohooFumie TazakiPaul TiedeR. P. J. TilanusMichael S. TitusKenji TomaPablo TornéTyler TrentSascha TrippeShuichiro TsudaIlse van BemmelHuib Jan van LangeveldeDaniel R. van RossumJan WagnerJ. F. C. WardleJonathan WeintroubNorbert WexRobert WhartonMaciek WielgusGeorge N. WongQingwen 庆文 Wu 吴Ken YoungAndré YoungZiri YounsiFeng 峰 Yuan 袁Ye-Fei 业飞 Yuan 袁J. A. ZensusGuang-Yao ZhaoShan-Shan ZhaoZiyan ZhuJuan Carlos AlgabaAlexander AllardiRodrigo AmesticaJ. AnczarskiU. BachFrederick K. BaganoffChristopher BeaudoinB. A. BensonRyan BertholdJ. BlanchardR. BlundellSandra BustamenteR. J. CappalloEdgar Castillo-DomínguezChih-Cheng ChangShu-Hao ChangSong-Chu ChangChung-Chen ChenRyan ChilsonTim C. ChuterRodrigo Córdova RosadoI. M. CoulsonT. M. CrawfordJoseph CrowleyJohn DavidM. DeromeMatthew R. DexterSven DornbuschKevin A. DudevoirSergio A. DzibA. EckartChris EckertN. R. EricksonW. EverettAaron FaberJoseph FarahVernon FathThomas W. FolkersDavid C. ForbesR. FreundArturo I. Gómez-RuizDavid M. GaleF. GaoGertie GeertsemaD. A. GrahamChristopher H. GreerRonald GrossleinFrédéric GuethDaryl HaggardN. W. HalversonChih-Chiang HanKuo-Chang HanH. JinchiYutaka HasegawaJ. W. HenningA. Hernández-GómezR. Herrero‐IllanaS. HeyminckAkihiko HirotaJames HogeYau-De HuangC. M. Violette ImpellizzeriHomin JiangA. KambleRyan KeislerKimihiro KimuraYusuke KonoDerek KuboJohn KurodaRichard LacasseRobert A. LaingE. M. LeitchChao-Te LiL. C.-C. LinChing-Tang LiuKuan-Yu LiuLi-Ming LuR. G. MarsonPierre Martin-CocherKyle MassingillCallie MatulonisMartin P. McCollStephen R. McWhirterHugo MessiasZheng Meyer-ZhaoDaniel MichalikAlfredo MontañaWilliam MontgomerieMatias Mora-KleinD. MudersAndrew NadolskiS. NavarroJoey NeilsenChi H. NguyenHiroaki NishiokaTimothy NortonMichael A. NowakGeorge NystromHideo OgawaPeter OshiroTomoaki OyamaHarriet ParsonsScott PaineJ. PeñalverN. PhillipsMichael PoirierNicolas PradelRurik A. PrimianiPhilippe RaffinA. RahlinGeorge ReilandC. RisacherIgnacio RuizAlejandro F. Sáez-MadaínRemi SassellaP. SchellartPaul ShawKevin M. SilvaHotaka ShiokawaDavid R. SmithW. M. SnowKamal SouccarDon SousaT. K. SridharanRanjani SrinivasanWilliam StahmA. A. StarkKyle StorySjoerd T. TimmerLaura VertatschitschCraig WaltherTa-Shun WeiN. WhitehornA. R. WhitneyD. P. WoodyJ. G. A. WouterlootMelvin WrightPaul YamaguchiChen-Yu YuMilagros ZeballosShuo ZhangL. M. Ziurys

Abstract

Abstract When surrounded by a transparent emission region, black holes are expected to reveal a dark shadow caused by gravitational light bending and photon capture at the event horizon. To image and study this phenomenon, we have assembled the Event Horizon Telescope, a global very long baseline interferometry array observing at a wavelength of 1.3 mm. This allows us to reconstruct event-horizon-scale images of the supermassive black hole candidate in the center of the giant elliptical galaxy M87. We have resolved the central compact radio source as an asymmetric bright emission ring with a diameter of 42 ± 3 μ as, which is circular and encompasses a central depression in brightness with a flux ratio ≳10:1. The emission ring is recovered using different calibration and imaging schemes, with its diameter and width remaining stable over four different observations carried out in different days. Overall, the observed image is consistent with expectations for the shadow of a Kerr black hole as predicted by general relativity. The asymmetry in brightness in the ring can be explained in terms of relativistic beaming of the emission from a plasma rotating close to the speed of light around a black hole. We compare our images to an extensive library of ray-traced general-relativistic magnetohydrodynamic simulations of black holes and derive a central mass of M = (6.5 ± 0.7) × 10 9 M ⊙ . Our radio-wave observations thus provide powerful evidence for the presence of supermassive black holes in centers of galaxies and as the central engines of active galactic nuclei. They also present a new tool to explore gravity in its most extreme limit and on a mass scale that was so far not accessible.

Astrophysical Phenomena and ObservationsAstrophysics and Cosmic PhenomenaPulsars and Gravitational Waves ResearchPhysicsSupermassive black holeAstrophysicsBlack hole (networking)Event horizonBinary black holeGalaxyIntermediate-mass black holeAstronomyStellar black hole

Funding

  • National Science Foundation
  • National Aeronautics and Space Administration
  • Gordon and Betty Moore Foundation
  • National Radio Astronomy Observatory
  • International Max Planck Research School for Environmental, Cellular and Molecular Microbiology
  • Leverhulme Trust
  • National Research Foundation
  • Department of Science and Technology, Ministry of Science and Technology, India
  • Ministry of Education, Culture, Sports, Science and Technology
  • National Natural Science Foundation of China
  • Chinese Academy of Sciences
  • Nederlandse Organisatie voor Wetenschappelijk Onderzoek
  • Generalitat Valenciana
  • Nuclear Safety and Security Commission
  • National Research Foundation of Korea
  • Max-Planck-Gesellschaft
  • Recruitment Program of Global Experts
  • Istituto Nazionale di Fisica Nucleare
  • Natural Sciences and Engineering Research Council of Canada
  • Japan Society for the Promotion of Science
  • Dirección General de Asuntos del Personal Académico, Universidad Nacional Autónoma de México
  • National Institutes of Natural Sciences
  • National Key Research and Development Program of China
  • Office of International Science and Engineering
Citations
3,995
FWCI
300.24
field-weighted impact
References
235
Percentile
100%
vs. same field & year
Citations per year
Cited by
Hunting for extra dimensions in the shadow of M87*
Physical review. D/Physical review. D. · 2019 · 359 citations
Black hole shadows, photon rings, and lensing rings
Physical review. D/Physical review. D. · 2019 · 590 citations
The NANOGrav 15 yr Data Set: Search for Signals from New Physics
The Astrophysical Journal Letters · 2023 · 729 citations
First M87 Event Horizon Telescope Results. III. Data Processing and Calibration
The Astrophysical Journal Letters · 2019 · 853 citations
First M87 Event Horizon Telescope Results. IV. Imaging the Central Supermassive Black Hole
The Astrophysical Journal Letters · 2019 · 1,439 citations
References
Electromagnetic extraction of energy from Kerr black holes
Monthly Notices of the Royal Astronomical Society · 1977 · 4,768 citations
Relativistic jets as compact radio sources
The Astrophysical Journal · 1979 · 1,934 citations
On the fate of gas accreting at a low rate on to a black hole
Monthly Notices of the Royal Astronomical Society · 1999 · 1,320 citations
Breakdown of predictability in gravitational collapse
Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields · 1976 · 2,423 citations
Testing general relativity with present and future astrophysical observations
Classical and Quantum Gravity · 2015 · 1,413 citations
Hydromagnetic flows from accretion discs and the production of radio jets
Monthly Notices of the Royal Astronomical Society · 1982 · 3,830 citations
Observation of Gravitational Waves from a Binary Black Hole Merger
Physical Review Letters · 2016 · 13,779 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole · Scinovex