Probing Intrinsic Ellipticity in Neutron Star Binaries

Fuente: arXiv
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Auteurs principaux: Miao, Zhiqiang, Yang, Huan
Format: Preprint
Publié: 2025
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author Miao, Zhiqiang
Yang, Huan
author_facet Miao, Zhiqiang
Yang, Huan
contents We present a novel resonance mechanism that can naturally occur in neutron star binaries: a spin-orbit resonance. This resonance locks the binary into a unique state where the neutron star spin evolves alongside the orbit. The resonance requires a finite neutron star ellipticity $ε$ possibly sourced by strong internal magnetic fields in magnetars, which are motivated by population study of eccentric neutron star-black hole binary GW200105. We find that the locking probability is proportional to $\sqrtε$. We derive the phase correction in the gravitational waveform due to this resonance locking effect, and have conducted a search in all neutron star binaries up to the O4a gravitational-wave catalog, with no positive event found so far. Observations by next-generation detectors such as Einstein Telescope and Cosmic Explorer, or even the upcoming upgrade of Advanced LIGO, have the potential to detect such locking signals, enabling precise measurements of both neutron star's ellipticity and moment of inertia. Future searches should be performed to discover this resonance, or, if undetected, to place constraints on the magnetar fraction in neutron star binaries.
format Preprint
id arxiv_https___arxiv_org_abs_2511_08895
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Probing Intrinsic Ellipticity in Neutron Star Binaries
Miao, Zhiqiang
Yang, Huan
High Energy Astrophysical Phenomena
Solar and Stellar Astrophysics
General Relativity and Quantum Cosmology
We present a novel resonance mechanism that can naturally occur in neutron star binaries: a spin-orbit resonance. This resonance locks the binary into a unique state where the neutron star spin evolves alongside the orbit. The resonance requires a finite neutron star ellipticity $ε$ possibly sourced by strong internal magnetic fields in magnetars, which are motivated by population study of eccentric neutron star-black hole binary GW200105. We find that the locking probability is proportional to $\sqrtε$. We derive the phase correction in the gravitational waveform due to this resonance locking effect, and have conducted a search in all neutron star binaries up to the O4a gravitational-wave catalog, with no positive event found so far. Observations by next-generation detectors such as Einstein Telescope and Cosmic Explorer, or even the upcoming upgrade of Advanced LIGO, have the potential to detect such locking signals, enabling precise measurements of both neutron star's ellipticity and moment of inertia. Future searches should be performed to discover this resonance, or, if undetected, to place constraints on the magnetar fraction in neutron star binaries.
title Probing Intrinsic Ellipticity in Neutron Star Binaries
topic High Energy Astrophysical Phenomena
Solar and Stellar Astrophysics
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2511.08895