Second MAYA Catalog of Binary Black Hole Numerical Relativity Waveforms

Fuente: arXiv
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Main Authors: Ferguson, Deborah, Allsup, Evelyn, Anne, Surendra, Bouyer, Galina, Gracia-Linares, Miguel, Iglesias, Hector, Jan, Aasim, Laguna, Pablo, Lange, Jacob, Martinez, Erick, Meoni, Filippo, Nowicki, Ryan, Shoemaker, Deirdre, Steadham, Blake, Trostel, Max L., Tsao, Bing-Jyun, Valorz, Finny
Format: Preprint
Published: 2023
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author Ferguson, Deborah
Allsup, Evelyn
Anne, Surendra
Bouyer, Galina
Gracia-Linares, Miguel
Iglesias, Hector
Jan, Aasim
Laguna, Pablo
Lange, Jacob
Martinez, Erick
Meoni, Filippo
Nowicki, Ryan
Shoemaker, Deirdre
Steadham, Blake
Trostel, Max L.
Tsao, Bing-Jyun
Valorz, Finny
author_facet Ferguson, Deborah
Allsup, Evelyn
Anne, Surendra
Bouyer, Galina
Gracia-Linares, Miguel
Iglesias, Hector
Jan, Aasim
Laguna, Pablo
Lange, Jacob
Martinez, Erick
Meoni, Filippo
Nowicki, Ryan
Shoemaker, Deirdre
Steadham, Blake
Trostel, Max L.
Tsao, Bing-Jyun
Valorz, Finny
contents Numerical relativity waveforms are a critical resource in the quest to deepen our understanding of the dynamics of, and gravitational waves emitted from, merging binary systems. We present 181 new numerical relativity simulations as the second MAYA catalog of binary black hole waveforms (a sequel to the Georgia Tech waveform catalog). Most importantly, these include 55 high mass ratio (q >= 4), 48 precessing, and 92 eccentric (e > 0.01) simulations, including seven simulations which are both eccentric and precessing. With these significant additions, this new catalog fills in considerable gaps in existing public numerical relativity waveform catalogs. The waveforms presented in this catalog are shown to be convergent and are consistent with current gravitational wave models. They are available to the public at https://cgpstorage.ph.utexas.edu/waveforms.
format Preprint
id arxiv_https___arxiv_org_abs_2309_00262
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Second MAYA Catalog of Binary Black Hole Numerical Relativity Waveforms
Ferguson, Deborah
Allsup, Evelyn
Anne, Surendra
Bouyer, Galina
Gracia-Linares, Miguel
Iglesias, Hector
Jan, Aasim
Laguna, Pablo
Lange, Jacob
Martinez, Erick
Meoni, Filippo
Nowicki, Ryan
Shoemaker, Deirdre
Steadham, Blake
Trostel, Max L.
Tsao, Bing-Jyun
Valorz, Finny
General Relativity and Quantum Cosmology
Instrumentation and Methods for Astrophysics
Numerical relativity waveforms are a critical resource in the quest to deepen our understanding of the dynamics of, and gravitational waves emitted from, merging binary systems. We present 181 new numerical relativity simulations as the second MAYA catalog of binary black hole waveforms (a sequel to the Georgia Tech waveform catalog). Most importantly, these include 55 high mass ratio (q >= 4), 48 precessing, and 92 eccentric (e > 0.01) simulations, including seven simulations which are both eccentric and precessing. With these significant additions, this new catalog fills in considerable gaps in existing public numerical relativity waveform catalogs. The waveforms presented in this catalog are shown to be convergent and are consistent with current gravitational wave models. They are available to the public at https://cgpstorage.ph.utexas.edu/waveforms.
title Second MAYA Catalog of Binary Black Hole Numerical Relativity Waveforms
topic General Relativity and Quantum Cosmology
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2309.00262