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The strength of crystalline color superconductors

机译:结晶色超导体的强度

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摘要

We present a study of the shear modulus of the crystalline color superconducting phase of quark matter, showing that this phase of dense, but not asymptotically dense, quark matter responds to shear stress as a very rigid solid. This phase is characterized by a gap parameter that is periodically modulated in space and therefore spontaneously breaks translational invariance. We derive the effective action for the phonon fields that describe space- and time-dependent fluctuations of the crystal structure formed by , and obtain the shear modulus from the coefficients of the spatial derivative terms. Within a Ginzburg-Landau approximation, we find shear moduli which are 20 to 1000 times larger than those of neutron star crusts. This phase of matter is thus more rigid than any known material in the universe, but at the same time the crystalline color superconducting phase is also superfluid. These properties raise the possibility that the presence of this phase within neutron stars may have distinct implications for their phenomenology. For example, (some) pulsar glitches may originate in crystalline superconducting neutron star cores.
机译:我们展示了夸克晶体超导相的剪切模量的研究,表明这种致密的阶段,但不是渐近致密的,夸克物质响应剪切应力作为非常刚性的固体。该阶段的特征在于间隙参数,其在空间中周期性地调制,因此自发地打破平移不变性。我们从描述由空间衍生术语的系数中描述由空间衍生术语的系数的晶体结构的空间和时间依赖性波动的有效行动。在Ginzburg-Landau近似值中,我们发现剪切模量比中子星外壳大20至1000倍。因此,这种物质的阶段比宇宙中的任何已知材料更加刚性,但同时结晶彩色超导相也是超氟。这些性质提高了中子恒星内该阶段存在的可能性可能对其现象学具有不同的影响。例如,(一些)脉冲丸故障可能来自晶体超导中子星形磁芯。

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