Generic Gravitational Wave Signals from the Collapse of Rotating Stellar Cores
arXiv:astro-ph/0702305 · doi:10.1103/PhysRevLett.98.251101
Abstract
We perform general relativistic simulations of stellar core collapse to a proto-neutron star, using a microphysical equation of state as well as an approximate description of deleptonization. We show that for a wide variety of rotation rates and profiles the gravitational wave burst signals from the core bounce are of a generic type, known as Type I in the literature. In our systematic study, using both general relativity and Newtonian gravity, we identify and individually quantify the micro- and macrophysical mechanisms leading to this result, i.e. the effects of rotation, the equation of state, and deleptonization. Such a generic type of signal templates will likely facilitate a more efficient search in current and future gravitational wave detectors of both interferometric and resonant type.
4 pages, 3 figures; minor modifications and additions
References in corpus (1)
Cited by in corpus (28)
- The gravitational wave burst signal from core collapse of rotating stars
- Evolving black hole-neutron star binaries in general relativity using pseudospectral and finite difference methods
- Extraction of Gravitational Waves in Numerical Relativity
- Parameter estimation with gravitational waves
- Gravitational Wave Extraction in Simulations of Rotating Stellar Core Collapse
- Gravitational waves from 3D MHD core collapse simulations
- Neutrinos from Supernovae as a Trigger for Gravitational Wave Search
- A new general relativistic magnetohydrodynamics code for dynamical spacetimes
- Gravitational wave asteroseismology with protoneutron stars
- General relativistic simulations of pasive-magneto-rotational core collapse with microphysics
- Supernova Seismology: Gravitational Wave Signatures of Rapidly Rotating Core Collapse
- Rotating stellar core-collapse waveform decompositon: a Principal Component Analysis approach
- Impacts of Rotation on Three-dimensional Hydrodynamics of Core-collapse Supernovae
- Gravitational-Wave Extraction from Neutron Star Oscillations: comparing linear and nonlinear techniques
- Dynamical Formation of Scalarized Black Holes and Neutron Stars through Stellar Core Collapse
- Gravity Gets There First with Dark Matter Emulators
- Core collapse in massive scalar-tensor gravity
- Gravitational waves from pulsations of neutron stars described by realistic Equations of State
- Classification of the core-collapse supernova explosion mechanism with learned dictionaries
- Impact of Rotation on the Multimessenger Signatures of a Hadron-quark Phase Transition in Core-collapse Supernovae
- The Yet-Unobserved Multi-Messenger Gravitational-Wave Universe
- Exploring the relativistic regime with Newtonian hydrodynamics: II. An effective gravitational potential for rapid rotation
- Determination of the angular momentum distribution of supernovae from gravitational wave observations
- Gravitational Radiation from Collapsing Magnetized Dust. II -- Polar Parity Perturbation --
- Scalar Gravitational Wave Signals from Core Collapse in Massive Scalar-Tensor Gravity with Triple-Scalar Interactions
- Convective stability analysis of massive neutron stars formed in binary mergers
- Assessing the Distance for Probing the Nuclear Equation of State with Supernova Gravitational Waves
- Trends in gravitational wave emission in axisymmetric simulations of rotating core-collapse supernovae