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First M87 Event Horizon Telescope Results. III. Data Processing and Calibration

The Astrophysical Journal Letters · 2019 · Vol. 875(1) · pp. L3–L3
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-EncinasPer 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André YoungKen YoungZiri YounsiFeng 峰 Yuan 袁Ye-Fei 业飞 Yuan 袁J. A. ZensusGuang-Yao ZhaoShan-Shan ZhaoZiyan ZhuR. J. CappalloJoseph FarahThomas W. FolkersZheng Meyer-ZhaoDaniel MichalikAndrew NadolskiHiroaki NishiokaNicolas PradelRurik A. PrimianiKamal SouccarLaura VertatschitschPaul Yamaguchi

Abstract

Abstract We present the calibration and reduction of Event Horizon Telescope (EHT) 1.3 mm radio wavelength observations of the supermassive black hole candidate at the center of the radio galaxy M87 and the quasar 3C 279, taken during the 2017 April 5–11 observing campaign. These global very long baseline interferometric observations include for the first time the highly sensitive Atacama Large Millimeter/submillimeter Array (ALMA); reaching an angular resolution of 25 μ as, with characteristic sensitivity limits of ∼1 mJy on baselines to ALMA and ∼10 mJy on other baselines. The observations present challenges for existing data processing tools, arising from the rapid atmospheric phase fluctuations, wide recording bandwidth, and highly heterogeneous array. In response, we developed three independent pipelines for phase calibration and fringe detection, each tailored to the specific needs of the EHT. The final data products include calibrated total intensity amplitude and phase information. They are validated through a series of quality assurance tests that show consistency across pipelines and set limits on baseline systematic errors of 2% in amplitude and 1° in phase. The M87 data reveal the presence of two nulls in correlated flux density at ∼3.4 and ∼8.3 G λ and temporal evolution in closure quantities, indicating intrinsic variability of compact structure on a timescale of days, or several light-crossing times for a few billion solar-mass black hole. These measurements provide the first opportunity to image horizon-scale structure in M87.

Radio Astronomy Observations and TechnologyAstrophysical Phenomena and ObservationsAstrophysics and Cosmic PhenomenaPhysicsSupermassive black holeMillimeterAmplitudeAstrophysicsTelescopeCalibrationAngular resolution (graph drawing)InterferometryGalaxy
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