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首页> 外文期刊>The Astrophysical journal >Vortex Configurations, Oscillations, and Pinning in Neutron Star Crusts
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Vortex Configurations, Oscillations, and Pinning in Neutron Star Crusts

机译:中子星壳中的涡旋结构,振荡和钉扎

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摘要

The rotating neutron superfluid in the inner crust of a neutron star is threaded by quantized vortex lines. The pinning force from lattice nuclei and the Magnus force from neutron superfluid act onto a vortex line that has a finite tension. The configuration of a vortex line in equilibrium comprises a number of pinned straight lengths separated by unpinned kinks when the rotation axis is slightly inclined to the major axis of a crystal lattice and the Magnus force is not so strong. Energy of ~4 MeV is required to form a kink at densities of ~3.4 × 1013 g cm-3. Magnus force makes the vortex line parabolic on a global scale. There exist two modes, rotational and helical (Kelvin), for oscillations allowed on a vortex line. The vortex oscillations in the pinned straight segments are possible only above a minimum frequency. We find no unstable mode that grows with time. Hence, the vortex configurations with kinks may be stable and yield the strongly pinned state. The essence of our results may not be altered even when we consider the vortex behaviors in a polycrystalline structure. Our studies suggest that pinning of a vortex line in a polycrystalline structure would still be strong enough to explain the large glitches.
机译:中子星内壳中的旋转中子超流体通过量化的涡旋线穿过。来自晶格核的钉扎力和来自中子超流体的马格努斯力作用在具有有限张力的涡旋线上。当旋转轴相对于晶格的主轴稍微倾斜并且马格努斯力不是很强时,处于平衡状态的涡旋线的构型包括许多固定的直线长度,这些固定的直线长度由非固定的扭折分开。需要约4 MeV的能量以〜3.4×1013 g cm-3的密度形成扭折。马格努斯力使涡旋线在全球范围内呈抛物线形。对于涡流线上允许的振荡,存在两种模式,旋转模式和螺旋模式(开尔文)。固定直线段中的涡旋振荡只有在最小频率以上才可能发生。我们发现没有随时间增长的不稳定模式。因此,具有扭结的涡流构型可以是稳定的并且产生强钉扎状态。即使我们考虑多晶结构中的涡旋行为,我们的结果的本质也可能不会改变。我们的研究表明,多晶结构中的旋涡线固定仍将足以解释较大的毛刺。

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