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Covariant analysis of Newtonian multi-fluid models for neutron stars: III Transvective, viscous, and superfluid drag dissipation

机译:牛顿多流体中子星模型的协变分析:III对流,粘性和超流体阻力耗散

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摘要

As a follow up to articles dealing firstly with a convective variational formulation in a Milne-Cartan framework for non-dissipative multi fluid models, and secondly with various ensuing stress energy conservation laws and generalised virial theorems, this work continues a series showing how analytical procedures developed in the context of General Relativity can be usefully adapted for implementation in a purely Newtonian framework where they provide physical insights that are not so easy to obtain by the traditional approach based on a 3+1 space time decomposition. The present article describes the 4-dimensionally covariant treatment of various dissipative mechanisms, including viscosity in non-superfluid constituents, superfluid vortex drag, ordinary resistivity (mutual friction) between relatively moving non-superfluid constituents, and the transvective dissipation that occurs when matter is transformed from one constituent to another due to chemical disequilibrium such as may be produced by meridional circulation in neutron stars. The corresponding non dissipative limit cases of vortex pinning, convection, and chemical equilibrium are also considered.
机译:作为文章的后续,该文章首先在Milne-Cartan框架中对非耗散多流体模型进行对流变分公式化,其次涉及各种随之而来的应力能量守恒定律和广义病毒定理,该工作继续进行一系列研究,展示了如何分析程序在广义相对论的背景下开发的方法可以有效地适合于在纯牛顿框架中实施,在该框架中,它们提供了物理见解,而这些见解是基于3 + 1时空分解的传统方法所不容易获得的。本文介绍了各种耗散机制的4维协变处理,包括非超流体成分中的粘度,超流体涡旋阻力,相对运动的非超流体成分之间的普通电阻率(相互摩擦)以及物质发生时的对流耗散由于化学不平衡而从一种成分转变为另一种成分,例如中子星的子午环流可能产生的。还考虑了涡流钉扎,对流和化学平衡的相应非耗散极限情况。

著录项

  • 作者

    Carter, B; Chamel, N;

  • 作者单位
  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 eng
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