Gravitational waves from oscillating neutron stars in axial symmetry are studied performing numerical simulations in full general relativity. Neutron stars are modeled by a polytropic equation of state for simplicity. A gauge-invariant wave extraction method as well as a quadrupole formula are adopted for computation of gravitational waves. It is found that the gauge-invariant variables systematically contain numerical errors generated near the outer boundaries in the present axisymmetric computation. We clarify their origin, and illustrate it possible to eliminate the dominant part of the systematic errors. The best corrected waveforms for oscillating and rotating stars currently contain errors of magnitude $\sim 10^{-3}$ in the local wave...
The frequencies and damping times of neutron star (and quark star) oscillations have been computed u...
We present results from simulations of axisymmetric relativistic rotational core collapse. The gener...
We present new results for pulsating neutron stars. We have calculated the eigenfrequencies of the m...
The main aim of this study is the comparison of gravitational waveforms obtained from numerical simu...
The main aim of this study is the comparison of gravitational waveforms obtained from numerical simu...
The main aim of this study is the comparison of gravitational waveforms obtained from numerical simu...
The main aim of this study is the comparison of gravitational waveforms obtained from numerical simu...
We compare different gravitational-wave extraction methods used in three-dimensional nonlinear simul...
We report application of a method for extracting gravitational waves to three-dimensional numerical ...
We present results from simulations of axisymmetric relativistic rotational core collapse. The main ...
We present new numerical algorithms for the coupled Einstein- perfect-fluid system in axisymmetry. O...
We present the first calculation of gravitational wave emission produced in the gravitational collap...
This thesis is devoted to studying gravitational waves from “mountains” on neutron stars. It is, in...
We consider the perturbations of a relativistic star as an initial-value problem. Having discussed t...
We present new results for pulsating stars in general relativity. First we show that the so-called g...
The frequencies and damping times of neutron star (and quark star) oscillations have been computed u...
We present results from simulations of axisymmetric relativistic rotational core collapse. The gener...
We present new results for pulsating neutron stars. We have calculated the eigenfrequencies of the m...
The main aim of this study is the comparison of gravitational waveforms obtained from numerical simu...
The main aim of this study is the comparison of gravitational waveforms obtained from numerical simu...
The main aim of this study is the comparison of gravitational waveforms obtained from numerical simu...
The main aim of this study is the comparison of gravitational waveforms obtained from numerical simu...
We compare different gravitational-wave extraction methods used in three-dimensional nonlinear simul...
We report application of a method for extracting gravitational waves to three-dimensional numerical ...
We present results from simulations of axisymmetric relativistic rotational core collapse. The main ...
We present new numerical algorithms for the coupled Einstein- perfect-fluid system in axisymmetry. O...
We present the first calculation of gravitational wave emission produced in the gravitational collap...
This thesis is devoted to studying gravitational waves from “mountains” on neutron stars. It is, in...
We consider the perturbations of a relativistic star as an initial-value problem. Having discussed t...
We present new results for pulsating stars in general relativity. First we show that the so-called g...
The frequencies and damping times of neutron star (and quark star) oscillations have been computed u...
We present results from simulations of axisymmetric relativistic rotational core collapse. The gener...
We present new results for pulsating neutron stars. We have calculated the eigenfrequencies of the m...