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Gravitational-Wave Extraction from Neutron Star Oscillations: comparing linear and nonlinear techniques

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arxiv 0808.4002 v3 pith:3K4KAOXW submitted 2008-08-28 gr-qc astro-ph

Gravitational-Wave Extraction from Neutron Star Oscillations: comparing linear and nonlinear techniques

classification gr-qc astro-ph
keywords differenttheoryapproachesextractiongauge-invariantgravitational-wavelinearnonlinear
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The main aim of this study is the comparison of gravitational waveforms obtained from numerical simulations which employ different numerical evolution approaches and different wave-extraction techniques. For this purpose, we evolve an oscillating, non-rotating polytropic neutron-star model with two different approaches: a full nonlinear relativistic simulation (in three dimensions) and a linear simulation based on perturbation theory. The extraction of the gravitational-wave signal is performed with three methods: The gauge-invariant curvature-perturbation theory based on the Newman-Penrose scalar $\psi_4$; The gauge-invariant Regge-Wheeler-Zerilli-Moncrief metric-perturbation theory of a Schwarzschild space-time; Some generalization of the quadrupole emission formula.

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