Gravitational waves from a spinning particle scattered by a relativistic star: Axial mode case
arXiv:gr-qc/0009055 · doi:10.1103/PhysRevD.63.124012
Abstract
We study gravitational waves from a spinning test particle scattered by a relativistic star using a perturbation method. The present analysis is restricted to axial modes. By calculating the energy spectrum, the waveforms and the total energy and angular momentum of gravitational waves, we analyze the dependence of the emitted gravitational waves on a particle spin. For a normal neutron star, the energy spectrum has one broad peak whose characteristic frequency corresponds to the angular velocity at the turning point (a periastron). Since the turning point is determined by the orbital parameter, there exists the dependence of the gravitational wave on a particle spin. We find that the total energy of gravitational waves gets larger as the spin increases in the anti-parallel direction to the orbital angular momentum. For an ultracompact star, in addition to such an orbital contribution, we find the quasi-normal modes exited by a scattered particle, whose excitation rate to gravitational waves depends on the particle spin. We also discuss the ratio of the total angular momentum to the total energy of gravitational waves and explain its spin dependence.
REVTeX, 17 pages with 13 figures. Submitted to Phys. Rev. D
References in corpus (5)
- Towards a Stable Numerical Evolution of Strongly Gravitating Systems in General Relativity: The Conformal Treatments
- Fully general relativistic simulation of coalescing binary neutron stars: Preparatory tests
- Scattering of particles by neutron stars: Time-evolutions for axial perturbations
- Fully general relativistic simulation of merging binary clusters -- Spatial gauge condition --
- Excitation of Neutron Star Oscillations by an Orbiting Particle
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