The Gravitational Wave Forms of Galactic Compact Binaries with Mass-Transfer Correction

Fuente: arXiv
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Main Authors: Zhang, Zi-han, Liu, Bin, Yu, Sheng-hua, Yang, Jie
Format: Preprint
Published: 2023
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author Zhang, Zi-han
Liu, Bin
Yu, Sheng-hua
Yang, Jie
author_facet Zhang, Zi-han
Liu, Bin
Yu, Sheng-hua
Yang, Jie
contents In this paper, we focus on the effect of mass-transfer between compact binaries like neutron-star-neutron-star (NS-NS) systems and neutron-star-white-dwarf (NS-WD) systems on gravitational waves (GWs). We adopt the mass quadrupole formula with 2.5 order Post-Newtonian (2.5 PN) approximation to calculate the GW radiation and the orbital evolution. After a reasonable discussion of astrophysical processes concerning our scenario, two kinds of mass-transfer models are applied here. One is the mass overflow of the atmosphere, where the companion star orbits into the primary's Roche limit and its atmosphere overflows into the common envelope. The other one is the tidal disruption of the core, which is viewed as incompressible fluid towards the primary star, and in the near region branches into an accretion disc (AD) and direct accretion flow. Viewing this envelope and as a background, the GW of its spin can be calculated as a rotating non-spherically symmetric star. We eventually obtained the corrected gravitational waveform (GWF) templates for different initial states in the inspiral phase.
format Preprint
id arxiv_https___arxiv_org_abs_2304_13581
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle The Gravitational Wave Forms of Galactic Compact Binaries with Mass-Transfer Correction
Zhang, Zi-han
Liu, Bin
Yu, Sheng-hua
Yang, Jie
General Relativity and Quantum Cosmology
In this paper, we focus on the effect of mass-transfer between compact binaries like neutron-star-neutron-star (NS-NS) systems and neutron-star-white-dwarf (NS-WD) systems on gravitational waves (GWs). We adopt the mass quadrupole formula with 2.5 order Post-Newtonian (2.5 PN) approximation to calculate the GW radiation and the orbital evolution. After a reasonable discussion of astrophysical processes concerning our scenario, two kinds of mass-transfer models are applied here. One is the mass overflow of the atmosphere, where the companion star orbits into the primary's Roche limit and its atmosphere overflows into the common envelope. The other one is the tidal disruption of the core, which is viewed as incompressible fluid towards the primary star, and in the near region branches into an accretion disc (AD) and direct accretion flow. Viewing this envelope and as a background, the GW of its spin can be calculated as a rotating non-spherically symmetric star. We eventually obtained the corrected gravitational waveform (GWF) templates for different initial states in the inspiral phase.
title The Gravitational Wave Forms of Galactic Compact Binaries with Mass-Transfer Correction
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2304.13581