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Goldstone modes in the neutron star core

机译:中子星核中的金石模式

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We studied the effect of the diverse Goldstone boson modes in the transport properties of dense neutron matter. The two Goldstone bosons associated with density oscillations of the neutron and electron + proton fluids, calledsuperfluid phonons, mix and couple strongly to electrons reducing their mean free time and suppressing their contribution to transport coefficients. For typical neutron star temperatures in the rangeT=106–109K, the Goldstone modes associated with rotational symmetry, calledangulons, couple weakly to each other and to electrons and, consequently, have anomalously large mean free paths and can contribute to both diffusive and ballistic transport of heat and momentum. Still, their contribution is smaller that coming from the electrons on account of their smaller density. We speculate that long-wavelength superfluid phonons andangulonscan play a role in neutron star seismology, and lead to interesting phenomenology especially since angulons couple to magnetic fields and have anisotropic dispersion relations.
机译:我们研究了各种戈德斯通玻色子模式对致密中子物质输运性质的影响。与中子和电子+质子流体的密度振荡有关的两个戈德斯通玻色子,称为超流体声子,与电子强烈混合并耦合,从而减少了它们的平均自由时间并抑制了它们对传输系数的贡献。对于T = 106–109K范围内的典型中子星温度,与旋转对称性相关的戈德斯通模式(称为角质子)彼此弱耦合,与电子耦合,因此具有异常大的平均自由程,并可能导致扩散和弹道传输和动量。由于密度较小,它们的贡献仍然小于来自电子的贡献。我们推测,长波长超流体声子和安格隆斯坎在中子星地震学中起作用,并导致有趣的现象学,特别是由于安古隆耦合到磁场并具有各向异性的色散关系。

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