Unveiling the merger structure of black hole binaries in generic planar orbits

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Carullo, Gregorio, Albanesi, Simone, Nagar, Alessandro, Gamba, Rossella, Bernuzzi, Sebastiano, Andrade, Tomas, Trenado, Juan
Format: Preprint
Published: 2023
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866911852100845568
author Carullo, Gregorio
Albanesi, Simone
Nagar, Alessandro
Gamba, Rossella
Bernuzzi, Sebastiano
Andrade, Tomas
Trenado, Juan
author_facet Carullo, Gregorio
Albanesi, Simone
Nagar, Alessandro
Gamba, Rossella
Bernuzzi, Sebastiano
Andrade, Tomas
Trenado, Juan
contents The precise modeling of binary black hole coalescences in generic planar orbits is a crucial step to disentangle dynamical and isolated binary formation channels through gravitational-wave observations. The merger regime of such coalescences exhibits a significantly higher complexity compared to the quasicircular case, and cannot be readily described through standard parameterizations in terms of eccentricity and anomaly. In the spirit of the Effective One Body formalism, we build on the study of the test-mass limit, and introduce a new modelling strategy to describe the general-relativistic dynamics of two-body systems in generic orbits. This is achieved through gauge-invariant combinations of the binary energy and angular momentum, such as a dynamical "impact parameter" at merger. These variables reveal simple "quasi-universal" structures of the pivotal merger parameters, allowing to build an accurate analytical representation of generic (bounded and dynamically-bounded) orbital configurations. We demonstrate the validity of these analytical relations using 311 numerical simulations of bounded noncircular binaries with progenitors from the RIT and SXS catalogs, together with a custom dataset of dynamical captures generated using the Einstein Toolkit, and test-mass data in bound orbits. Our modeling strategy lays the foundations of accurate and complete waveform models for systems in arbitrary orbits, bolstering observational explorations of dynamical formation scenarios and the discovery of new classes of gravitational wave sources.
format Preprint
id arxiv_https___arxiv_org_abs_2309_07228
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Unveiling the merger structure of black hole binaries in generic planar orbits
Carullo, Gregorio
Albanesi, Simone
Nagar, Alessandro
Gamba, Rossella
Bernuzzi, Sebastiano
Andrade, Tomas
Trenado, Juan
General Relativity and Quantum Cosmology
High Energy Astrophysical Phenomena
The precise modeling of binary black hole coalescences in generic planar orbits is a crucial step to disentangle dynamical and isolated binary formation channels through gravitational-wave observations. The merger regime of such coalescences exhibits a significantly higher complexity compared to the quasicircular case, and cannot be readily described through standard parameterizations in terms of eccentricity and anomaly. In the spirit of the Effective One Body formalism, we build on the study of the test-mass limit, and introduce a new modelling strategy to describe the general-relativistic dynamics of two-body systems in generic orbits. This is achieved through gauge-invariant combinations of the binary energy and angular momentum, such as a dynamical "impact parameter" at merger. These variables reveal simple "quasi-universal" structures of the pivotal merger parameters, allowing to build an accurate analytical representation of generic (bounded and dynamically-bounded) orbital configurations. We demonstrate the validity of these analytical relations using 311 numerical simulations of bounded noncircular binaries with progenitors from the RIT and SXS catalogs, together with a custom dataset of dynamical captures generated using the Einstein Toolkit, and test-mass data in bound orbits. Our modeling strategy lays the foundations of accurate and complete waveform models for systems in arbitrary orbits, bolstering observational explorations of dynamical formation scenarios and the discovery of new classes of gravitational wave sources.
title Unveiling the merger structure of black hole binaries in generic planar orbits
topic General Relativity and Quantum Cosmology
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2309.07228