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The entrainment matrix of a superfluid neutron-proton mixture at a finite temperature

机译:有限温度下超流体中子-质子混合物的夹带矩阵

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摘要

The entrainment matrix (also termed the Andreev-Bashkin matrix or the mass-density matrix) for a neutron-proton mixture is derived at a finite temperature in a neutron star core. The calculation is performed in the frame of the Landau-Fermi-liquid theory generalized to account for superfluidity of nucleons. It is shown, that the temperature dependence of the entrainment matrix is described by a universal function independent on an actual model of nucleon-nucleon interaction employed. The results are presented in the form convenient for their practical use. The entrainment matrix is important, e.g., in kinetics of superfluid nucleon mixtures or in studies of the dynamical evolution of neutron stars (in particular, in the studies of star pulsations and pulsar glitches). (c) 2005 Elsevier B.V. All rights reserved.
机译:中子-质子混合物的夹带矩阵(也称为安德列夫-巴什金矩阵或质量密度矩阵)是在中子星核的有限温度下得出的。该计算在Landau-Fermi-液体理论的框架内进行,该理论被普遍用来解释核子的超流动性。结果表明,夹带矩阵的温度依赖性由通用函数描述,而该通用函数与所采用的核子-核子相互作用的实际模型无关。结果以便于实际使用的形式呈现。夹带基质例如在超流体核子混合物的动力学中或在中子星的动力学演化的研究中(特别是在星脉动和脉冲星毛刺的研究中)是重要的。 (c)2005 Elsevier B.V.保留所有权利。

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