Hydro-without-Hydro Framework for Simulations of Black Hole-Neutron Star Binaries
Carlos F. Sopuerta, Ulrich Sperhake, Pablo Laguna
Abstract
We introduce a computational framework which avoids solving explicitly hydrodynamic equations and is suitable to study the pre-merger evolution of black hole-neutron star binary systems. The essence of the method consists of constructing a neutron star model with a black hole companion and freezing the internal degrees of freedom of the neutron star during the course of the evolution of the space-time geometry. We present the main ingredients of the framework, from the formulation of the problem to the appropriate computational techniques to study these binary systems. In addition, we present numerical results of the construction of initial data sets and evolutions that demonstrate the feasibility of this approach.
Create a lesson
Related papers
Positive energy from timelike singularities
Fernando Ruiz Ruiz
A Fast and Scalable Transformer Pipeline for Binary Black Hole Detection
Chayan Chatterjee, Abigail Petulante, Haowei Fu et al.
Ghost-free higher-gradient Newtonian gravity from the Second Law of Thermodynamics
M. Pszota, P. Ván
Unimodular Gravity with Arbitrary Diffusion Function: A Dynamical System Reconstruction Approach
Gabriel Gómez, Guillermo Palma, Norman Cruz
Gravitational waves from core collapse of rotating very-massive stars: 3D numerical relativity computation
Alan Tsz-Lok Lam, Masaru Shibata, Sho Fujibayashi
Guiding center quantization of a quantum Hall analog of Hawking radiation
Rodrigo Andrade e Silva, Ted Jacobson