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首页> 外文期刊>Physical review letters >Mutual Friction In A Cold Color-flavor-locked Superfluid And R-mode Instabilities In Compact Stars
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Mutual Friction In A Cold Color-flavor-locked Superfluid And R-mode Instabilities In Compact Stars

机译:冷色味锁定的超流体中的相互摩擦和紧凑型恒星的R模式不稳定性

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摘要

Dissipative processes acting in rotating neutron stars are essential in preventing the growth of the r-mode instability. We estimate the damping time of r modes of a hypothetical compact quark star made up by color-flavor-locked quark matter at a temperature T ≤ 0.01 MeV. The dissipation that we consider is due to the mutual friction force between the normal and the superfluid component arising from the elastic scattering of phonons with quantized vortices. This process is the dominant one for temperatures T ≤ 0.01 MeV, where the mean free path of phonons due to their self-interactions is larger than the radius of the star. We find that r-mode oscillations are efficiently damped by this mechanism for pulsars rotating at frequencies of the order of 1 Hz at most. Our analysis rules out the possibility that cold pulsars rotating at higher frequencies are entirely made up by color-flavor-locked quark matter.
机译:旋转中子星中的耗散过程对于防止r型不稳定性的增长至关重要。我们估计了由色味锁定的夸克物质在温度T≤0.01 MeV下构成的假设的紧凑型夸克星的r模的阻尼时间。我们考虑的耗散是由于声子在定量涡旋中的弹性散射所引起的法向分量与超流体分量之间的相互摩擦力。这一过程是温度T≤0.01 MeV的主要过程,在该过程中,声子由于自身相互作用而产生的平均自由程大于恒星的半径。我们发现,对于最大以1 Hz量级旋转的脉冲星,这种机制有效地抑制了r模式振荡。我们的分析排除了以较高频率旋转的冷脉冲星完全由色味锁定的夸克物质组成的可能性。

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