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Entrainment in Superfluid Neutron-Star Crusts: Hydrodynamic Description and Microscopic Origin

机译:Superfluid Neutron-Star Crusts夹带:流体动力学描述和显微源

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摘要

In spite of the absence of viscous drag, the neutron superfluid permeating the inner crust of a neutron star cannot flow freely and is entrained by the nuclear lattice similarly to laboratory superfluid atomic gases in optical lattices. The role of entrainment on the neutron superfluid dynamics is reviewed. For this purpose, a minimal hydrodynamical model of superfluidity in neutron-star crusts is presented. This model relies on a fully 4-dimensionally covariant action principle. The equivalence of this formulation with the more traditional approach is demonstrated. In addition, the different treatments of entrainment in terms of dynamical effective masses or superfluid density are clarified. The nuclear energy density functional theory employed for the calculations of all the necessary microscopic inputs is also reviewed, focusing on superfluid properties. In particular, the microscopic origin of entrainment and the different methods to estimate its importance are discussed.
机译:尽管没有粘性阻力,所以渗透中子星的内壳的中子超流不能自由流动,并且通过核晶格夹带,类似于光学格子中的实验室超流原子气体。 综述了夹带对中子超流动力学的作用。 为此目的,提出了中子恒星地壳中超浊度的最小流体动力学模型。 该模型依赖于完全4维的协助动作原理。 对这种具有更传统方法的这种制剂的等价性得到了证明。 此外,阐明了在动态有效质量或超流密度方面的夹带的不同处理。 还审查了用于计算所有必要的微观投入的计算的核能密度功能理论,重点是超流性。 特别地,讨论了夹带的微观起源和估计其重要性的不同方法。

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