Scalar gravitational waves from relativistic stars in scalar-tensor gravity
arXiv:1402.5699 · doi:10.1103/PhysRevD.89.064031
Abstract
Unlike general relativity, the scalar gravitational waves can be excited due to the radial oscillations in scalar-tensor gravity. To examine the scalar gravitational waves in scalar-tensor gravity, we derive the evolution equations of the radial oscillations of neutron stars and determine the specific oscillation frequencies of the matter oscillations and scalar gravitational waves, where we adopt two different numerical approaches, i.e., the mode analysis and direct time evolution. As a result, we observe the spontaneous scalarization even in the radial oscillations. Depending on the background scalar field and coupling constant, the total energy radiated by the scalar gravitational waves dramatically changes, where the specific oscillation frequencies are completely same as the matter oscillations. That is, via the direct observations of scalar gravitational waves, one can not only reveal the gravitational theory, but also extract the radial oscillations of neutron stars.
accepted for publication in PRD
References in corpus (10)
- 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
- Torsional Oscillations of Relativistic Stars with Dipole Magnetic Fields
- Signatures of hadron-quark mixed phase in gravitational waves
- Probing the Equation of State of Nuclear Matter via Neutron Star Asteroseismology
- Alfvén QPOs in Magnetars
- Gravitational Waves from Nonlinear Couplings of Radial and Polar Nonradial Modes in Relativistic Stars
- Constraints on the Magnetic Field Geometry of Magnetars
- Alfvén Polar Oscillations of Relativistic Stars
- Electron screening effects on crustal torsional oscillations
Cited by in corpus (34)
- Testing General Relativity with Present and Future Astrophysical Observations
- Spontaneous scalarization
- Neutron stars in Horndeski gravity
- Highly compact neutron stars in scalar-tensor theories of gravity: Spontaneous scalarization versus gravitational collapse
- Relativistic stars in scalar-tensor theories with disformal coupling
- Strong gravitational lensing by an electrically charged black hole in Eddington-inspired Born-Infeld gravity
- New class of quasinormal modes of neutron stars in scalar-tensor gravity
- Orbital and epicyclic frequencies around rapidly rotating compact stars in scalar-tensor theories of gravity
- Spontaneous scalarization: asymmetron as dark matter
- On the maximum mass limit of neutron stars in scalar-tensor gravity
- Spherical collapse in f(R) gravity and the Belinskii-Khalatnikov-Lifshitz conjecture
- Stellar oscillations in Eddington-inspired Born-Infeld gravity
- Torsional oscillations of neutron stars in scalar-tensor theory of gravity
- Pulse profiles of highly compact pulsars in general relativity
- Light curves from highly compact neutron stars with spot size effect
- Systematical study of pulsar light curves with special relativistic effects
- Stability of relativistic stars with scalar hairs
- Pulse profiles from a pulsar in scalar-tensor gravity
- Massive Hybrid Quark Stars with Strong Magnetic Field
- Effective-action model for dynamical scalarization beyond the adiabatic approximation
- Compactness of neutron stars and Tolman VII solutions in scalar-tensor gravity
- Oscillation dynamics of scalarized neutron stars
- Nonlinear dynamics of oscillating neutron stars in scalar-tensor gravity
- Stability of topological neutron stars
- Sensitivity of pulsar light curves to spacetime geometry and efficacy of analytic approximations
- Numerical Relativity and High Energy Physics: Recent Developments
- Nonlinear evolution and non-uniqueness of scalarized neutron stars
- Spontaneous scalarization of charged stars
- Monopolar and quadrupolar gravitational radiation from magnetically deformed neutron stars in modified gravity
- Torsional oscillations of neutron stars with highly tangled magnetic fields
- Universal relations for quasinormal modes of neutron stars in gravity
- Instabilities of scalar fields around oscillating stars
- Dynamical Chameleon Neutron Stars: stability, radial oscillations and scalar radiation in spherical symmetry
- Large Scale (~25 m^2) metal diffraction grating of submicron period as possible optoelectronic detector for short scalar gravitational waves