Orbital and epicyclic frequencies around rapidly rotating compact stars in scalar-tensor theories of gravity
arXiv:1405.6976 · doi:10.1103/PhysRevD.90.044004
Abstract
We study the orbital and epicyclic frequencies of particles orbiting around rapidly rotating neutron stars and strange stars in a particular scalar-tensor theory of gravity. We find very large deviations of these frequencies, when compared to their corresponding values in general relativity, for the maximum-mass rotating models. In contrast, for models rotating with spin frequency of 700Hz (approximately the largest known rotation rate of neutron stars), the deviations are generally small. Nevertheless, for a very stiff equation of state and a high mass the deviation of one of the epicyclic frequencies from its GR value is appreciable even at a spin frequency of 700Hz. In principle, such a deviation could become important in models of quasi-periodic oscillations in low-mass x-ray binaries and could serve as a test of strong gravity (if other parameters are well constraint). Even though the present paper is concentrated mainly on orbital and epicyclic frequencies, we present here for the first time rapidly rotating, scalarized equilibrium compact stars with realistic hadronic equations of state and strange matter equation of state. We also provide analytical expressions for the exterior spacetime of scalarized neutron stars and their epicyclic frequencies in the nonrotating limit.
13 pages, 10 figures, 4 tables
References in corpus (8)
- Shapiro delay measurement of a two solar mass neutron star
- A Massive Pulsar in a Compact Relativistic Binary
- The relativistic pulsar-white dwarf binary PSR J1738+0333 II. The most stringent test of scalar-tensor gravity
- Neutron-star mergers in scalar-tensor theories of gravity
- Phases of 4D Scalar-tensor black holes coupled to Born-Infeld nonlinear electrodynamics
- Quasi-normal modes, bifurcations and non-uniqueness of charged scalar-tensor black holes
- The vacuum revealed: the final state of vacuum instabilities in compact stars
- Neutron star masses from hydrodynamical effects in obscured sgHMXBs
Cited by in corpus (16)
- Spontaneous scalarization
- Scalarized Hairy Black Holes
- Distinguishing a Kerr-like black hole and a naked singularity in perfect fluid dark matter via precession frequencies
- Quasiequilibrium sequences of binary neutron stars undergoing dynamical scalarization
- Scalarization of neutron stars with realistic equations of state
- Circular orbits in Kerr-Taub-NUT spacetime and their implications for accreting black holes and naked singularities
- Torsional oscillations of neutron stars in scalar-tensor theory of gravity
- Thin accretion disk signatures of scalarized black holes in Einstein-scalar-Gauss-Bonnet gravity
- Neutron Star Structure in the Presence of Nonminimally Coupled Scalar Fields
- An accurate metric for the spacetime around neutron stars
- Stability of relativistic stars with scalar hairs
- Precession and Lense-Thirring effect of hairy Kerr spacetimes
- Spontaneous scalarization of charged stars
- Distinguishing Black Hole and Naked Singularity in MOG via Inertial Frame Dragging Effect
- Slowly rotating topological neutron stars -- universal relations and epicyclic frequencies
- Probing Lorentz-violating effects via precession and accretion disk images in a rotating bumblebee spacetime