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Template Banks for Binary black hole searches with Numerical Relativity waveforms

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arxiv 1310.7949 v1 pith:3KDTRGX6 submitted 2013-10-29 gr-qc astro-ph.COastro-ph.HE

Template Banks for Binary black hole searches with Numerical Relativity waveforms

classification gr-qc astro-ph.COastro-ph.HE
keywords numericalbankssimulationstemplatewaveformadvancedmodelssearches
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Gravitational waves (GW) from coalescing stellar-mass black hole binaries (BBH) are expected to be detected by the Advanced Laser Interferometer Gravitational-wave Observatory and Advanced Virgo. Detection searches operate by matched-filtering the detector data using a bank of waveform templates. Traditionally, template banks for BBH are constructed from intermediary analytical waveform models which are calibrated against numerical relativity simulations and which can be aluated for any choice of BBH parameters. This paper explores an alternative to the traditional approach, namely the construction of template banks directly from numerical BBH simulations. Using non-spinning BBH systems as an example, we demonstrate which regions of the mass-parameter plane can be covered with existing numerical BBH waveforms. We estimate the required number and required length of BBH simulations to cover the entire non-spinning BBH parameter plane up to mass-ratio 10, thus illustrating that our approach can be used to guide parameter placement of future numerical simulations. We derive error bounds which are independent of analytical waveform models; therefore, our formalism can be used to independently test the accuracy of such waveform models. The resulting template banks are suitable for advanced LIGO searches.

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