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Spectrum of shear modes in the neutron-star crust: Estimating the nuclear-physics uncertainties

机译:中子星外壳中剪切模式的光谱:估算核物理的不确定性

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摘要

I construct a model of the inner crust of neutron stars using interactions from chiral effective field theory (EFT) in order to calculate its equation of state (EOS), shear properties, and the spectrum of crustal shear modes. I systematically study uncertainties associated with the nuclear physics input, the crust composition, and neutron entrainment, and estimate their impact on crustal shear properties and the shear-mode spectrum. I find that the uncertainties originate mainly in two sources: The neutron-matter EOS and neutron entrainment. I compare the spectrum of crustal shear modes to observed frequencies of quasiperiodic oscillations in the afterglow of giant γ -ray bursts and find that all of these frequencies could be described within uncertainties, which are, however, at present too sizable to infer neutron-star properties from observations.
机译:我使用手性有效场理论(EFT)的相互作用来构造中子恒星内部地壳的模型,以便计算其状态(EOS),剪切特性和地壳剪切模式的光谱。我系统地研究与核物理输入,地壳组成和中子夹带相关的不确定性,并估计它们对地壳剪切性能的影响和剪切模式光谱。我发现不确定性主要来自两个来源:中子物质EOS和中子夹带。我比较地壳剪切模式的光谱观察到巨大γ-射线突发中的QuaSiodic振荡频率的频谱,发现所有这些频率都可以在不确定性中描述,然而,目前迄今为止太大了以推断中子星观察的属性。

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  • 来源
    《Physical Review C》 |2017年第2017期|015803.1-015803.12|共12页
  • 作者

    I. Tews;

  • 作者单位

    Institute for Nuclear Theory University of Washington Seattle Washington 98195-1550 USA;

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  • 正文语种 eng
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