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Bulk viscosity in kaon-condensed color-flavor locked quark matter

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arxiv 0806.0285 v2 pith:GLVR274Y submitted 2008-06-02 nucl-th astro-phhep-ph

classification nucl-thastro-phhep-ph
keywords bulkphaseviscosityquarkcfl-kmatterbosoncolor-flavor
verification ladder T0 review T1 audit T2 compute T3 formal

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Color-flavor locked (CFL) quark matter at high densities is a color superconductor, which spontaneously breaks baryon number and chiral symmetry. Its low-energy thermodynamic and transport properties are therefore dominated by the H (superfluid) boson, and the octet of pseudoscalar pseudo-Goldstone bosons of which the neutral kaon is the lightest. We study the CFL-K^0 phase, in which the stress induced by the strange quark mass causes the kaons to condense, and there is an additional ultra-light "K^0" Goldstone boson arising from the spontaneous breaking of isospin. We compute the bulk viscosity of matter in the CFL-K^0 phase, which arises from the beta-equilibration processes K^0<->H+H and K^0+H<->H. We find that the bulk viscosity varies as T^7, unlike the CFL phase where it is exponentially Boltzmann-suppressed by the kaon's energy gap. However, in the temperature range of relevance for r-mode damping in compact stars, the bulk viscosity in the CFL-K^0 phase turns out to be even smaller than in the uncondensed CFL phase, which already has a bulk viscosity much smaller than all other known color-superconducting quark phases.

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  1. Extending Israel-Stewart theory: Causal bulk viscosity at large gradients

    gr-qc 2025-01 accept novelty 8.0 of 10

    A new family of polytropic bulk-viscous fluids reduces to Israel-Stewart near equilibrium and stays causal, symmetric hyperbolic, and thermodynamically consistent for arbitrarily large viscous stresses.

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