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The NINJA-2 catalog of hybrid post-Newtonian/numerical-relativity waveforms for non-precessing black-hole binaries

Authors :
Ilana MacDonald
Mark Hannam
Wolfgang Tichy
Philipp Mösta
Ulrich Sperhake
Michael Pürrer
Yuk Tung Liu
Luisa T. Buchman
Frank Ohme
Manuela Campanelli
Hiroyuki Nakano
Mark A. Scheel
Tony Chu
Stuart L. Shapiro
Michael Boyle
Badri Krishnan
Laura Cadonati
Doreen Müller
Petr Tsatsin
Vasileios Paschalidis
Lionel London
Bruno C. Mundim
Ian Hinder
Deirdre Shoemaker
Harald P. Pfeiffer
Christian Reisswig
Carlos O. Lousto
P. Ajith
Nicholas Taylor
Denis Pollney
Lawrence E. Kidder
James Healy
Béla Szilágyi
Yosef Zlochower
Marcelo Ponce
Stephen Fairhurst
Pablo Laguna
Duncan A. Brown
Geoffrey Lovelace
Carlos F. Sopuerta
Pedro Marronetti
Bernd Brügmann
George Reifenberger
Larne Pekowsky
Zachariah B. Etienne
Satya Mohapatra
Sascha Husa
Lucía Santamaría
Source :
Classical and quantum gravity
Publication Year :
2012

Abstract

The Numerical INJection Analysis (NINJA) project is a collaborative effort between members of the numerical relativity and gravitational wave data analysis communities. The purpose of NINJA is to study the sensitivity of existing gravitational-wave search and parameter-estimation algorithms using numerically generated waveforms, and to foster closer collaboration between the numerical relativity and data analysis communities. The first NINJA project used only a small number of injections of short numerical-relativity waveforms, which limited its ability to draw quantitative conclusions. The goal of the NINJA-2 project is to overcome these limitations with long post-Newtonian - numerical relativity hybrid waveforms, large numbers of injections, and the use of real detector data. We report on the submission requirements for the NINJA-2 project and the construction of the waveform catalog. Eight numerical relativity groups have contributed 63 hybrid waveforms consisting of a numerical portion modelling the late inspiral, merger, and ringdown stitched to a post-Newtonian portion modelling the early inspiral. We summarize the techniques used by each group in constructing their submissions. We also report on the procedures used to validate these submissions, including examination in the time and frequency domains and comparisons of waveforms from different groups against each other. These procedures have so far considered only the $(\ell,m)=(2,2)$ mode. Based on these studies we judge that the hybrid waveforms are suitable for NINJA-2 studies. We note some of the plans for these investigations.<br />Presented at Amaldi 9

Details

Language :
English
Database :
OpenAIRE
Journal :
Classical and quantum gravity
Accession number :
edsair.doi.dedup.....d99ebdbfceeca81788d82f75ea2d4d2f