A new scheme for matching general relativistic ideal magnetohydrodynamics to its force-free limit
arXiv:1310.3274 · doi:10.1103/PhysRevD.88.104031
Abstract
We present a new computational method for smoothly matching general relativistic ideal magnetohydrodynamics (MHD) to its force-free limit. The method is based on a flux-conservative formalism for MHD and its force-free limit, and a vector potential formulation for the induction equation to maintain the zero divergence constraint for the magnetic field. The force-free formulation we adopt evolves the magnetic field and the Poynting vector, instead of the magnetic and electric fields. We show that our force-free code passes a robust suite of tests, performed both in 1D flat spacetime and in 3D black hole spacetimes. We also demonstrate that our matching technique successfully reproduces the aligned rotator force-free solution. Our new techniques are suitable for studying electromagnetic effects and predicting electromagnetic signals arising in many different curved spacetime scenarios. For example, we can treat spinning neutron stars, either in isolation or in compact binaries, that have MHD interiors and force-free magnetospheres.
23 pages, 7 figures, submitted to PRD, added references, corrected typos
References in corpus (22)
- Accurate evolutions of inspiralling neutron-star binaries: prompt and delayed collapse to black hole
- Merger of binary neutron stars to a black hole: Disk mass, short gamma-ray bursts, and quasinormal mode ringing
- Magnetized Neutron Star Mergers and Gravitational Wave Signals
- Accurate evolutions of inspiralling and magnetized neutron-stars: equal-mass binaries
- General relativistic simulations of magnetized binary neutron star mergers
- Relativistic Simulations of Black Hole-Neutron Star Mergers: Effects of black-hole spin
- Black hole-neutron star mergers at realistic mass ratios: Equation of state and spin orientation effects
- Simulating binary neutron stars: dynamics and gravitational waves
- Binary Black-Hole Mergers in Magnetized Disks: Simulations in Full General Relativity
- Anisotropic mass ejection from black hole-neutron star binaries: Diversity of electromagnetic counterparts
- Black hole-neutron star mergers: effects of the orientation of the black hole spin
- Relativistic magnetohydrodynamics in dynamical spacetimes: A new AMR implementation
- General Relativistic Force-Free Electrodynamics: A New Code and Applications to Black Hole Magnetospheres
- Accurate Simulations of Binary Black-Hole Mergers in Force-Free Electrodynamics
- Mergers of Magnetized Neutron Stars with Spinning Black Holes: Disruption, Accretion and Fallback
- First direct comparison of non-disrupting neutron star-black hole and binary black hole merger simulations
- Importance of cooling in triggering the collapse of hypermassive neutron stars
- Exploring binary-neutron-star-merger scenario of short-gamma-ray bursts by gravitational-wave observation
- General relativistic simulations of black hole-neutron star mergers: Effects of tilted magnetic fields
- Accurate evolutions of inspiralling neutron-star binaries: assessment of the truncation error
- Linking electromagnetic and gravitational radiation in coalescing binary neutron stars
- Electromagnetic power of merging and collapsing compact objects
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