High angular momentum hot differentially rotating equilibrium star evolutions in conformally flat spacetime
arXiv:2402.18529 · doi:10.1103/PhysRevD.110.043015
Abstract
The conformal flatness approximation to the Einstein equations has been successfully used in many astrophysical applications such as initial data constructions and dynamical simulations. Although it has been shown that full general relativistic strongly differentially rotating equilibrium models deviate by at most a few percent from their conformally flat counterparts, whether those conformally flat solutions remain stable has not been fully addressed. To further understand the limitations of the conformal flatness approximation, in this work, we construct spatially-conformally-flat hot hypermassive neutron stars with post-merger-like rotation laws, and perform conformally flat evolutions and analysis over dynamical timescales. We find that enforcing conformally-flat spacetime could change the equilibrium of quasi-toroidal models with high angular momentum for compared to fully general relativistic cases. In contrast, all the quasi-spherical models considered in this work remain stable even with high angular momentum . Our investigation suggests that the quasi-spherical models are suitable initial data for long-lived hypermassive neutron star modeling in conformally flat spacetime.
References in corpus (49)
- SciPy 1.0--Fundamental Algorithms for Scientific Computing in Python
- Array Programming with NumPy
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Multi-messenger Observations of a Binary Neutron Star Merger
- Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A
- A Multi-Code Analysis Toolkit for Astrophysical Simulation Data
- Electromagnetic Counterparts of Compact Object Mergers Powered by the Radioactive Decay of R-process Nuclei
- Short-Duration Gamma-Ray Bursts
- Statistical Model for a Complete Supernova Equation of State
- Systematics of dynamical mass ejection, nucleosynthesis, and radioactively powered electromagnetic signals from neutron-star mergers
- Kilonovae
- Relativistic simulations of rotational core collapse. II. Collapse dynamics and gravitational radiation
- Equation-of-state dependence of the gravitational-wave signal from the ring-down phase of neutron-star mergers
- Rotational properties of hypermassive neutron stars from binary mergers
- Revealing the high-density equation of state through binary neutron star mergers
- The Dynamics of Neutrino-Driven Supernova Explosions after Shock Revival in 2D and 3D
- Improved constrained scheme for the Einstein equations: An approach to the uniqueness issue
- Conformally Flat Smoothed Particle Hydrodynamics: Application to Neutron Star Mergers
- Axisymmetric equilibrium models for magnetized neutron stars in General Relativity under the Conformally Flat Condition
- Properties of Neutrino-driven Ejecta from the Remnant of Binary Neutron Star Merger : Purely Radiation Hydrodynamics Case
- Non-linear axisymmetric pulsations of rotating relativistic stars in the conformal flatness approximation
- Waveless Approximation Theories of Gravity
- Nonexistence of conformally flat slices of the Kerr spacetime
- GRMHD in axisymmetric dynamical spacetimes: the X-ECHO code
- Kilonova/Macronova Emission from Compact Binary Mergers
- Neutrino transport in general relativistic neutron star merger simulations
- Systematics of prompt black-hole formation in neutron star mergers
- On the stability and maximum mass of differentially rotating relativistic stars
- General relativistic neutron stars with twisted magnetosphere
- On the Solution Space of Differentially Rotating Neutron Stars in General Relativity
- On the nonexistence of conformally flat slices in the Kerr and other stationary spacetimes
- General relativistic models for rotating magnetized neutron stars in conformally flat spacetime
- Numerical-relativity simulations of long-lived remnants of binary neutron star mergers
- Gmunu: Paralleled, grid-adaptive, general-relativistic magnetohydrodynamics in curvilinear geometries in dynamical spacetimes
- Relativistic Centrifugal Instability
- New code for equilibriums and quasiequilibrium initial data of compact objects. IV. Rotating relativistic stars with mixed poloidal and toroidal magnetic fields
- The Collapse of Differentially Rotating Supermassive Stars: Conformally Flat Simulations
- Gmunu: Toward multigrid based Einstein field equations solver for general-relativistic hydrodynamics simulations
- Equilibrium sequences of differentially rotating stars with post-merger-like rotational profiles
- On the dynamical stability of quasi-toroidal differentially rotating neutron stars
- General-relativistic radiation transport scheme in I: Implementation of two-moment based multi-frequency radiative transfer and code tests
- An extension of Gmunu: General-relativistic resistive magnetohydrodynamics based on staggered-meshed constrained transport with elliptic cleaning
- Oscillations of Highly Magnetized Non-rotating Neutron Stars
- Axisymmetric equilibrium models for magnetised neutron stars in Scalar-Tensor Theories
- General-relativistic radiation transport scheme in Gmunu II: Implementation of novel microphysical library for neutrino radiation -- Weakhub
- A hybrid approach to long-term binary neutron-star simulations
- On the accuracy of the IWM-CFC approximation in differentially rotating relativistic stars
- Axisymmetric Hydrodynamics in Numerical Relativity Using a Multipatch Method
- Maximum mass and stability of differentially rotating neutrons stars
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