We reexamine the gravitational collapse of rotating neutron stars to black holes by new 3+1 numerical relativity simulations employing the Z4c formulation of Einstein equations, the moving puncture gauge conditions, and a conservative mesh refinement scheme or the general relativistic hydrodynamics. The end state of the collapse is compared to the vacuum spacetime resulting from the evolution of spinning puncture initial data. Using a local analysis for the metric fields, we demonstrate that the two spacetimes atually agree. Gravitational waveforms are analyzed in some detail. We connect the emission of radiation to the collapse dynamics using simplified spacetime diagrams, and discuss the similarity of the waveform structure with the one of black hole perturbation theory.

Simulations of rotating neutron star collapse with the puncture gauge: End state and gravitational waveforms / Dietrich, Tim; Bernuzzi, Sebastiano. - In: PHYSICAL REVIEW D, PARTICLES, FIELDS, GRAVITATION, AND COSMOLOGY. - ISSN 1550-7998. - 91:4(2015). [10.1103/PhysRevD.91.044039]

Simulations of rotating neutron star collapse with the puncture gauge: End state and gravitational waveforms

BERNUZZI, Sebastiano
2015-01-01

Abstract

We reexamine the gravitational collapse of rotating neutron stars to black holes by new 3+1 numerical relativity simulations employing the Z4c formulation of Einstein equations, the moving puncture gauge conditions, and a conservative mesh refinement scheme or the general relativistic hydrodynamics. The end state of the collapse is compared to the vacuum spacetime resulting from the evolution of spinning puncture initial data. Using a local analysis for the metric fields, we demonstrate that the two spacetimes atually agree. Gravitational waveforms are analyzed in some detail. We connect the emission of radiation to the collapse dynamics using simplified spacetime diagrams, and discuss the similarity of the waveform structure with the one of black hole perturbation theory.
2015
Simulations of rotating neutron star collapse with the puncture gauge: End state and gravitational waveforms / Dietrich, Tim; Bernuzzi, Sebastiano. - In: PHYSICAL REVIEW D, PARTICLES, FIELDS, GRAVITATION, AND COSMOLOGY. - ISSN 1550-7998. - 91:4(2015). [10.1103/PhysRevD.91.044039]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/2788352
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