Lense-Thirring precession of neutron-star accretion flows: Relativistic versus classical precession
arXiv:2508.13777 · doi:10.1051/0004-6361/202554318
Abstract
The vertical (Lense-Thirring) precession of the innermost accretion flows has been discussed as a sensitive indicator of the rotational properties of neutron stars (NSs) and their equation of state because it vanishes for a non-rotating star. In this work, we apply the Hartle-Thorne spacetimes to study the frequencies of the precession for both geodesic and non-geodesic (fluid) flows. We build on previous findings on the effect of the NS quadrupole moment, which revealed the importance of the interplay between the relativistic and classical precession. Because of this interplay, the widely used Lense-Thirring metric, linear in the NS angular momentum, is insufficient to calculate the behaviour of the precession frequency across an astrophysically relevant range of NS angular momentum values. We find that even for a moderately oblate NSs, the dependencies of the precession frequency on the NS angular momentum at radii within the innermost accretion region have maxima that occur at relatively low values of the NS angular momentum. We conclude that very different groups of accreting NSs -- slow and fast rotators -- can display the same precession frequencies. This may explain the lack of evidence for a correlation between the frequencies of the observed low-frequency quasiperiodic oscillations and the NS spin. In our work, we provide a full, general description of precession behaviour, and also examples that assume specific NS and quark star (MIT bag) equation of state. Our calculations are reproducible using the associated Wolfram Mathematica notebook.
7 pages, 5 figures, published in Astronomy and Astrophysics, final version
References in corpus (21)
- X-ray Properties of Black-Hole Binaries
- The coherence of kHz quasi-periodic oscillations in the X-rays from accreting neutron stars
- On the kHz QPO frequency correlations in bright neutron star X-ray binaries
- On the maximum amplitude and coherence of the kilohertz quasi-periodic oscillations in low-mass X-ray binaries
- Black hole mass and spin measurements through the Relativistic Precession Model: XTE J1859+226
- Unified neutron star EOSs and neutron star structures in RMF models
- Controversy of the GRO J1655-40 black hole mass and spin estimates and its possible solutions
- Models of high-frequency quasi-periodic oscillations and black hole spin estimates in Galactic microquasars
- Testing the relativistic precession model using low frequency and kHz quasi-periodic oscillations in neutron star low mass X-ray binaries with known spin
- Epicyclic frequencies for rotating strange quark stars: the importance of stellar oblateness
- Epicyclic oscillations in the Hartle-Thorne external geometry
- Constraining models of twin peak quasi-periodic oscillations with realistic neutron star equations of state
- Neutron Star QPOs from Oscillating, Precessing Hot, Thick Flow
- On the frequency correlations of low-frequency QPOs with kilohertz QPOs in accreting millisecond X-ray pulsars
- Simple analytic formula relating the mass and spin of accreting compact objects to their rapid X-ray variability
- Appearance of innermost stable circular orbits of accretion discs around rotating neutron stars
- On one-parametric formula relating the frequencies of twin-peak quasi-periodic oscillations
- Accretion tori around rotating neutron stars I: Structure, shape and size
- Very low-frequency oscillations from the 11 Hz pulsar in Terzan 5: frame-dragging back on the table
- Epicyclic frequencies of spheroidal stars with non-uniform density
- Accretion tori around rotating neutron stars II: Oscillations and precessions