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Dissipation in relativistic superfluid neutron stars

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arxiv 1211.2452 v1 pith:XZUQQDWJ submitted 2012-11-11 astro-ph.SR astro-ph.HEgr-qc

Dissipation in relativistic superfluid neutron stars

classification astro-ph.SR astro-ph.HEgr-qc
keywords dampingsuperfluidmodesnormalneutronoscillationstarstimes
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We analyze damping of oscillations of general relativistic superfluid neutron stars. To this aim we extend the method of decoupling of superfluid and normal oscillation modes first suggested in [Gusakov & Kantor PRD 83, 081304(R) (2011)]. All calculations are made self-consistently within the finite temperature superfluid hydrodynamics. The general analytic formulas are derived for damping times due to the shear and bulk viscosities. These formulas describe both normal and superfluid neutron stars and are valid for oscillation modes of arbitrary multipolarity. We show that: (i) use of the ordinary one-fluid hydrodynamics is a good approximation, for most of the stellar temperatures, if one is interested in calculation of the damping times of normal f-modes; (ii) for radial and p-modes such an approximation is poor; (iii) the temperature dependence of damping times undergoes a set of rapid changes associated with resonance coupling of neighboring oscillation modes. The latter effect can substantially accelerate viscous damping of normal modes in certain stages of neutron-star thermal evolution.

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