论文标题

中子星中相互摩擦耦合时间尺度的相对论校正的通用公式

A universal formula for the relativistic correction to the mutual friction coupling time-scale in neutron stars

论文作者

Gavassino, Lorenzo, Antonelli, Marco, Pizzochero, Pierre, Haskell, Brynmor

论文摘要

涡流介导的相互摩擦控制中子星际内部的超流体和正常成分之间的耦合。例如,通过将脉冲星故障的精确定时观测与理论预测进行比较,可以限制恒星内部的物理学,但要在一般相对论中进行相互摩擦耦合的准确模型。我们直接从卡特的多流体形式主义中得出了这样的模型,并研究了相对论恒星中组件之间的涡流结构和耦合时间尺度。我们计算一般相对性如何修改量化涡旋的形状和密度,并表明,在准式Schwarzschild坐标中,它们可以作为直线近似为现实的中子星形配置。最后,我们提出了一个简单的通用公式(仅作为恒星紧凑性的函数),以进行相对论校正对毛刺升高时的校正,该校正在假设超氟储层中是在壳中或外部核心中的薄外壳中有效的。这种通用关系可以轻松地用于纠正,后验,任何牛顿耦合时间尺度的估计,而无需任何其他计算费用。

Vortex-mediated mutual friction governs the coupling between the superfluid and normal components in neutron star interiors. By, for example, comparing precise timing observations of pulsar glitches with theoretical predictions it is possible to constrain the physics in the interior of the star, but to do so an accurate model of the mutual friction coupling in general relativity is needed. We derive such a model directly from Carter's multifluid formalism, and study the vortex structure and coupling time-scale between the components in a relativistic star. We calculate how general relativity modifies the shape and the density of the quantized vortices and show that, in the quasi-Schwarzschild coordinates, they can be approximated as straight lines for realistic neutron star configurations. Finally, we present a simple universal formula (given as a function of the stellar compactness alone) for the relativistic correction to the glitch rise-time, which is valid under the assumption that the superfluid reservoir is in a thin shell in the crust or in the outer core. This universal relation can be easily employed to correct, a posteriori, any Newtonian estimate for the coupling time-scale, without any additional computational expense.

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