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Directly comparing GW150914 with numerical solutions of Einstein’s equations for binary black hole coalescence

163Citations signalées — pas une note de qualité
155Institutions déclarées
23Pays d’affiliation déclarés

Résumé fourni par la source

We compare GW150914 directly to simulations of coalescing binary black holes in full general relativity, including several performed specifically to reproduce this event. Our calculations go beyond existing semianalytic models, because for all simulations---including sources with two independent, precessing spins---we perform comparisons which account for all the spin-weighted quadrupolar modes, and separately which account for all the quadrupolar and octopolar modes. Consistent with the posterior distributions reported by Abbott et al. [Phys. Rev. Lett. 116, 241102 (2016)] (at the 90% credible level), we find the data are compatible with a wide range of nonprecessing and precessing simulations. Follow-up simulations performed using previously estimated binary parameters most resemble the data, even when all quadrupolar and octopolar modes are included. Comparisons including only the quadrupolar modes constrain the total redshifted mass ${M}_{z}\ensuremath{\in}[64\text{ }\text{ }{M}_{\ensuremath{\bigodot}}\ensuremath{-}82\text{ }\text{ }{M}_{\ensuremath{\bigodot}}]$, mass ratio $1/q={m}_{2}/{m}_{1}\ensuremath{\in}[0.6,1]$, and effective aligned spin ${\ensuremath{\chi}}_{\mathrm{eff}}\ensuremath{\in}[\ensuremath{-}0.3,0.2]$, where ${\ensuremath{\chi}}_{\mathrm{eff}}=({\mathbf{S}}_{1}/{m}_{1}+{\mathbf{S}}_{2}/{m}_{2})\ifmmode\cdot\else\textperiodcentered\fi{}\stackrel{^}{\mathbf{L}}/M$. Including both quadrupolar and octopolar modes, we find the mass ratio is even more tightly constrained. Even accounting for precession, simulations with extreme mass ratios and effective spins are highly inconsistent with the data, at any mass. Several nonprecessing and precessing simulations with similar mass ratio and ${\ensuremath{\chi}}_{\mathrm{eff}}$ are consistent with the data. Though correlated, the components' spins (both in magnitude and directions) are not significantly constrained by the data: the data is consistent with simulations with component spin magnitudes ${a}_{1,2}$ up to at least 0.8, with random orientations. Further detailed follow-up calculations are needed to determine if the data contain a weak imprint from transverse (precessing) spins. For nonprecessing binaries, interpolating between simulations, we reconstruct a posterior distribution consistent with previous results. The final black hole's redshifted mass is consistent with ${M}_{f,z}$ in the range $64.0\text{ }\text{ }{M}_{\ensuremath{\bigodot}}\ensuremath{-}73.5\text{ }\text{ }{M}_{\ensuremath{\bigodot}}$ and the final black hole's dimensionless spin parameter is consistent with ${a}_{f}=0.62--0.73$. As our approach invokes no intermediate approximations to general relativity and can strongly reject binaries whose radiation is inconsistent with the data, our analysis provides a valuable complement to Abbott et al. [Phys. Rev. Lett. 116, 241102 (2016)].

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Contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Directly comparing GW150914 with numerical solutions of Einstein’s equations for binary black hole coalescence
Date Crossref
14/09/2016
Éditeur
American Physical Society (APS)
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude et ne compte pas comme une seconde source scientifique indépendante.

Institutions déclarées

California Institute of TechnologyLouisiana State UniversityAmerican UniversityUniversity of SalernoIstituto Nazionale di Fisica Nucleare, Sezione di NapoliUniversity of FloridaLIGO Scientific CollaborationUniversité Savoie Mont BlancUniversity of SannioMax Planck Institute for Gravitational PhysicsNational Institute for Subatomic PhysicsVitenparkenMassachusetts Institute of TechnologyInstituto Nacional de Pesquisas EspaciaisIstituto Nazionale di Fisica Nucleare, Roma Tor VergataGran Sasso Science InstituteInter-University Centre for Astronomy and AstrophysicsTata Institute of Fundamental ResearchInternational Centre for Theoretical SciencesLeibniz University HannoverUniversity of Wisconsin–MilwaukeeUniversity of PisaIstituto Nazionale di Fisica Nucleare, Sezione di PisaAustralian National UniversityUniversity of MississippiCalifornia State University, FullertonUniversité Paris-SudUniversité Paris-SaclayChennai Mathematical InstituteUniversity of Rome Tor VergataUniversity of SouthamptonUniversität HamburgIstituto Nazionale di Fisica Nucleare, Sezione di Roma IDélégation Paris 7Université Paris CitéMontana State UniversityUniversity of PerugiaIstituto Nazionale di Fisica Nucleare, Sezione di PerugiaEuropean Gravitational ObservatorySyracuse UniversityUniversity of GlasgowInstitute for Particle and Nuclear PhysicsHUN-REN Wigner Research Centre for PhysicsColumbia UniversityStanford UniversityUniversity of PaduaIstituto Nazionale di Fisica Nucleare, Sezione di PadovaUniversity of BirminghamIstituto Nazionale di Fisica Nucleare, Sezione di GenovaUniversity of GenoaRaja Ramanna Centre for Advanced TechnologyLomonosov Moscow State UniversityUniversity of the West of ScotlandThe University of Western AustraliaRadboud University NijmegenUniversité Côte d'AzurObservatoire de la Côte d’AzurInstitut de Physique de RennesWashington State UniversityUniversity of UrbinoIstituto Nazionale di Fisica Nucleare, Sezione di FirenzeUniversity of OregonUniversité Paris Sciences et LettresÉcole Normale Supérieure - PSLSorbonne UniversitéCarleton CollegeAstronomical ObservatoryUniversity of WarsawVrije Universiteit AmsterdamPark UniversityUniversity of Maryland, College ParkGeorgia Institute of TechnologyLyon 1 UniversitéLaboratoire des Matériaux AvancésGoddard Space Flight CenterThe University of TokyoTsinghua UniversityTexas Tech UniversityPennsylvania State UniversityNational Tsing Hua UniversityCharles Sturt UniversityWest Virginia UniversityUniversity of ChicagoKorea Institute of Science & Technology InformationSapienza University of RomeSonoma State UniversityNorthwestern UniversityUniversity of MinnesotaUniversity of Minnesota SystemThe University of MelbourneInstitute for Plasma ResearchUniversity of SheffieldThe University of Texas Rio Grande ValleyUniversity of TrentoIstituto Nazionale di Fisica Nucleare, Trento Institute for Fundamental Physics And ApplicationsMontclair State UniversityCardiff UniversityEötvös Loránd UniversityNational Astronomical Observatory of JapanUniversity of EdinburghIndian Institute of Technology GandhinagarUniversity of SzegedEmbry–Riddle Aeronautical UniversityAstronomical Observatory of CapodimonteNational Institute for AstrophysicsUniversity of MichiganRochester Institute of TechnologyUniversity of Illinois Urbana-ChampaignUniversity of BiałystokUniversity of StrathclydeFundació Universitat-Empresa de les Illes BalearsUniversitat de les Illes BalearsIndian Institute of Science Education and Research ThiruvananthapuramUniversity of TorontoCanadian Institute for Theoretical AstrophysicsInstitute of Applied PhysicsPusan National UniversityHanyang UniversityThe University of AdelaideInstitute of MathematicsNational Centre for Nuclear ResearchAustralian Regenerative Medicine InstituteMonash UniversitySeoul National UniversityChinese University of Hong KongUniversity of Alabama in HuntsvilleUniversity of Massachusetts AmherstCentre National de la Recherche ScientifiqueESPCI ParisUniversità di CamerinoSouthern University and Agricultural and Mechanical CollegeWilliam & MaryWilliams (United States)American Institute for Economic ResearchInstituto de Investigaciones Fisicoquímicas Teóricas y AplicadasICTP South American Institute for Fundamental ResearchUniversity of CambridgeIndian Institute of Science Education and Research KolkataRutherford Appleton LaboratoryWhitman CollegeNational Institute for Mathematical SciencesUniversité de LyonHobart and William Smith CollegesUniversity of Zielona GóraUniversity of LondonKing's College LondonUniversidad de LondresUniversity College LondonAndrews UniversityUniversity of SienaTrinity UniversityUniversity of WashingtonKenyon CollegeAbilene Christian UniversityCornell University

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Pulsars and Gravitational Waves ResearchAstrophysical Phenomena and ObservationsBlack Holes and Theoretical Physics

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