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Kicks of magnetized strange quark stars induced by anisotropic emission of neutrinos

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arxiv 1801.06246 v2 pith:GZEHEJ4P submitted 2018-01-18 astro-ph.HE

classification astro-ph.HE
keywords anisotropicemissionmagneticstarvaluesconditionscorefield
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abstract

We study the anisotropic neutrino emission from the core of neutron stars induced by the star's magnetic field. We model the core as made out of a magnetized ideal gas of strange quark matter and implement the conditions for stellar equilibrium in this environment. The calculation is performed without resorting to analytical simplifications and for temperature, density and magnetic field values corresponding to typical conditions for a neutron star's evolution. The anisotropic neutrino emission produces a rocket effect that contributes to the star's kick velocity. We find that the computed values for the kick velocity lie within the range of the observed values, reaching velocities of the order of $\sim1000$ km s$^{-1}$ for magnetic fields between $10^{15}-10^{18}$ G and radii of 20 to 5 km, respectively.

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Cited by 1 Pith paper

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  1. Neutrino energy and momentum emission from magnetized dense quark matter

    hep-ph 2025-01 conditional novelty 8.0 of 10

    The paper derives the neutrino energy and momentum emission rates from magnetized dense quark matter, finding a small asymmetry ratio eta = 2e-3 |eB|/(mu_e T) that rules out neutrino momentum emission as the cause of ...

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