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The NINJA-2 project: detecting and characterizing gravitational waveforms modelled using numerical binary black hole simulations

63Citations signalées, ce qui n’est pas une note de qualité
136Institutions déclarées
18Pays d’affiliation déclarés

Rattachement africain : us, fr, it, gb, de, nl, br, in, pl, ru, au, es, ca, cn, tw, kr, hu, jp. Niveau de preuve : code pays fourni par la source.

Le résumé fourni par la source

The Numerical INJection Analysis (NINJA) project is a collaborative effort between members of the numerical relativity and gravitational-wave (GW) astrophysics communities. The purpose of NINJA is to study the ability to detect GWs emitted from merging binary black holes (BBH) and recover their parameters with next-generation GW observatories. We report here on the results of the second NINJA project, NINJA-2, which employs 60 complete BBH hybrid waveforms consisting of a numerical portion modelling the late inspiral, merger, and ringdown stitched to a post-Newtonian portion modelling the early inspiral. In a 'blind injection challenge' similar to that conducted in recent Laser Interferometer Gravitational Wave Observatory (LIGO) and Virgo science runs, we added seven hybrid waveforms to two months of data recoloured to predictions of Advanced LIGO (aLIGO) and Advanced Virgo (AdV) sensitivity curves during their first observing runs. The resulting data was analysed by GW detection algorithms and 6 of the waveforms were recovered with false alarm rates smaller than 1 in a thousand years. Parameter-estimation algorithms were run on each of these waveforms to explore the ability to constrain the masses, component angular momenta and sky position of these waveforms. We find that the strong degeneracy between the mass ratio and the BHs' angular momenta will make it difficult to precisely estimate these parameters with aLIGO and AdV. We also perform a large-scale Monte Carlo study to assess the ability to recover each of the 60 hybrid waveforms with early aLIGO and AdV sensitivity curves. Our results predict that early aLIGO and AdV will have a volume-weighted average sensitive distance of 300 Mpc (1 Gpc) for 10 M ⊙ + 10 M ⊙ (50 M ⊙ + 50 M ⊙ ) BBH coalescences. We demonstrate that neglecting the component angular momenta in the waveform models used in matched-filtering will result in a reduction in sensitivity for systems with large component angular momenta. This reduction is estimated to be up to ∼15% for 50 M ⊙ + 50 M ⊙ BBH coalescences with almost maximal angular momenta aligned with the orbit when using early aLIGO and AdV sensitivity curves.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
The NINJA-2 project: detecting and characterizing gravitational waveforms modelled using numerical binary black hole simulations
Date Crossref
20/05/2014
Éditeur
IOP Publishing
Type
journal-article

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

Les institutions déclarées

California Institute of TechnologyLouisiana State UniversityCentre National de la Recherche ScientifiqueLaboratoire d’Annecy de Physique des ParticulesInstitut National de Physique Nucléaire et de Physique des ParticulesUniversity of SalernoIstituto Nazionale di Fisica Nucleare, Sezione di NapoliUniversity of FloridaLIGO Scientific CollaborationCardiff UniversityMax Planck Institute for Gravitational PhysicsNational Institute for Subatomic PhysicsMassachusetts Institute of TechnologyInstituto Nacional de Pesquisas EspaciaisInter-University Centre for Astronomy and AstrophysicsTata Institute of Fundamental ResearchSyracuse UniversityLeibniz University HannoverUniversity of Wisconsin–MilwaukeeUniversity of SienaIstituto Nazionale di Fisica Nucleare, Sezione di PisaStanford UniversityUniversity of MississippiCalifornia State University, FullertonIstituto Nazionale di Fisica Nucleare, Sezione di Roma IUniversity of BirminghamMontana State UniversityEuropean Gravitational ObservatoryUniversity of GlasgowDélégation Paris 7Université Paris CitéCommissariat à l'Énergie Atomique et aux Énergies AlternativesLaboratoire AstroParticule et CosmologieSorbonne Paris CitéColumbia UniversityUniversity of PisaUniversity of WarsawIstituto Nazionale di Fisica Nucleare, Sezione di GenovaUniversity of GenoaSan Jose State UniversityLomonosov Moscow State UniversityUniversité Paris-SudGoddard Space Flight CenterThe University of Western AustraliaRadboud University NijmegenObservatoire de la Côte d’AzurInstitut de Physique de RennesUniversité de RennesLyon 1 UniversitéLaboratoire des Matériaux AvancésWashington State UniversityIstituto Nazionale di Fisica Nucleare, Sezione di PerugiaUniversity of UrbinoIstituto Nazionale di Fisica Nucleare, Sezione di FirenzeUniversity of OregonLaboratoire Kastler BrosselSorbonne UniversitéVrije Universiteit AmsterdamUniversity of Maryland, College ParkUniversity of Massachusetts AmherstUniversitat de les Illes BalearsUniversity of TorontoCanadian Institute for Theoretical AstrophysicsTsinghua UniversityUniversity of MichiganRochester Institute of TechnologyIstituto Nazionale di Fisica Nucleare, Roma Tor VergataNational Tsing Hua UniversityCharles Sturt UniversityPusan National UniversityAustralian National UniversityCarleton CollegeUniversity of Rome Tor VergataGran Sasso Science InstituteSapienza University of RomeSonoma State UniversityEmbry–Riddle Aeronautical UniversityGeorge Washington UniversityUniversity of CambridgeNorthwestern UniversityUniversity of MinnesotaBrownsville Public LibraryUniversity of SheffieldHUN-REN Wigner Research Centre for PhysicsUniversity of SannioUniversity of TrentoMontclair State UniversityPennsylvania State UniversityEötvös Loránd UniversityUniversity of PerugiaRutherford Appleton LaboratoryPerimeter InstituteAmerican UniversityThe University of AdelaideRaman Research InstituteKorea Institute of Science & Technology InformationUniversity of BiałystokUniversity of SouthamptonIndian Institute of Science Education and Research ThiruvananthapuramInstitute of Applied PhysicsSeoul National UniversityHanyang UniversityNational Centre for Nuclear ResearchInstitute of MathematicsInstitute for Plasma ResearchThe University of MelbourneIstituto Nazionale di Fisica Nucleare, Sezione di PadovaMonash UniversityUniversity of StrathclydeESPCI ParisUniversità di CamerinoThe University of Texas at AustinSouthern University and Agricultural and Mechanical CollegeWilliam & MaryWilliams (United States)Indian Institute of Science Education and Research KolkataNational Institute for Mathematical SciencesHobart and William Smith CollegesRaja Ramanna Centre for Advanced TechnologyUniversity of the West of ScotlandUniversity of Zielona GóraIndian Institute of Technology GandhinagarGeorgia Institute of TechnologyAndrews UniversityTrinity UniversityUniversity of WashingtonSoutheastern Louisiana UniversityAbilene Christian UniversityCornell UniversityFriedrich Schiller University JenaUniversity of Illinois Urbana-ChampaignFlorida Atlantic UniversityKyoto UniversityCanadian Institute for Advanced ResearchUniversity of GuelphInstitute of Space Sciences

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Les sujets associés

Pulsars and Gravitational Waves ResearchGamma-ray bursts and supernovaeAstrophysical Phenomena and Observations

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