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Evolutions of Magnetized and Rotating Neutron Stars
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Evolutions of Magnetized and Rotating Neutron Stars
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We study the evolution of magnetized and rigidly rotating neutron stars within a fully general relativistic implementation of ideal magnetohydrodynamics with no assumed symmetries in three spatial dimensions. The stars are modeled as rotating, magnetized polytropic stars and we examine diverse scenarios to study their dynamics and stability properties. In particular we concentrate on the stability of the stars and possible critical behavior. In addition to their intrinsic physical significance, we use these evolutions as further tests of our implementation which incorporates new developments to handle magnetized systems.
Forward citations
Cited by 1 Pith paper
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Characteristic Decomposition for Relativistic Numerical Simulations: II. Magnetohydrodynamics
A complete characteristic decomposition for GRMHD is derived in the Eulerian/conserved-variable form used by numerical relativity codes, via a quasi-invertible transformation extended to the magnetic field.
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