A multi-messenger mass determination method for LISA Neutron-Star White-Dwarf Binaries

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Hauptverfasser: Li, Kaye Jiale, Long, Jane SiNan, Wu, Kinwah, Kong, Albert K. H.
Format: Preprint
Veröffentlicht: 2025
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author Li, Kaye Jiale
Long, Jane SiNan
Wu, Kinwah
Kong, Albert K. H.
author_facet Li, Kaye Jiale
Long, Jane SiNan
Wu, Kinwah
Kong, Albert K. H.
contents Determining the mass of the neutron stars (NSs) accurately improves our understanding of the NS interior and complicated binary evolution. However, the masses of the systems are degenerate with orbital inclination angle when using solely gravitational waves (GWs) or electromagnetic measurements, especially for face-on binaries. Taking advantages of both GWs and optical observations for LISA neutron-star white-dwarf (NS-WD) binaries, we propose a mass determination method utilising multi-messenger observational information. By combining the binary mass function obtained from optical observations and a GW mass function, that we introduce, derived from GW observations, we demonstrate how we can set improved constraints on the NS mass and break the degeneracy in the mass and viewing inclination determination. We further comment on the universal relation of the error bar of the GW mass function versus GW signal-to-noise ratio (SNR), and propose a simple method for the estimate of capability of GW observations on mass determination with {LISA}. We show that for ultra-compact NS-WD binaries within our Galaxy, the mass of the NS can be constrained to within an accuracy of +- 0.2 \solarmass with the proposed method.
format Preprint
id arxiv_https___arxiv_org_abs_2503_13216
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A multi-messenger mass determination method for LISA Neutron-Star White-Dwarf Binaries
Li, Kaye Jiale
Long, Jane SiNan
Wu, Kinwah
Kong, Albert K. H.
High Energy Astrophysical Phenomena
Nuclear Theory
Determining the mass of the neutron stars (NSs) accurately improves our understanding of the NS interior and complicated binary evolution. However, the masses of the systems are degenerate with orbital inclination angle when using solely gravitational waves (GWs) or electromagnetic measurements, especially for face-on binaries. Taking advantages of both GWs and optical observations for LISA neutron-star white-dwarf (NS-WD) binaries, we propose a mass determination method utilising multi-messenger observational information. By combining the binary mass function obtained from optical observations and a GW mass function, that we introduce, derived from GW observations, we demonstrate how we can set improved constraints on the NS mass and break the degeneracy in the mass and viewing inclination determination. We further comment on the universal relation of the error bar of the GW mass function versus GW signal-to-noise ratio (SNR), and propose a simple method for the estimate of capability of GW observations on mass determination with {LISA}. We show that for ultra-compact NS-WD binaries within our Galaxy, the mass of the NS can be constrained to within an accuracy of +- 0.2 \solarmass with the proposed method.
title A multi-messenger mass determination method for LISA Neutron-Star White-Dwarf Binaries
topic High Energy Astrophysical Phenomena
Nuclear Theory
url https://arxiv.org/abs/2503.13216