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STABILITY CONDITIONS IN GAPLESS SUPERCONDUCTORS

机译:无形超导体中的稳定条件

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Gapless superconductivity can arise when pairing occurs between fermion species with different Fermi surface sizes, provided there is a sufficiently large mismatch between Fermi surfaces and/or at sufficiently large coupling constant In gapless states, secondary Fermi surfaces appear where quasiparticle excitation energy vanishes This work focuses on homogeneous and isotropic superfluids in the s-wave channel, with either zero (conventional superconductor), one, or two spherical Fermi surfaces The stability conditions for these candidate phases are analyzed. It is found that gapless states with one Fermi surface are stable in the BEC region, while gapless states with two Fermi surfaces are unstable in all parameter space. The results can be applied to ultracold fermionic atom systems.
机译:在具有不同费米表面尺寸的Fermion物种之间发生配对时,可以出现无磁性导电性,所以提供了FERMI表面和/或在无间状态下的足够大的耦合常数之间存在足够大的失配,二次费米表面出现在Quasiparticle激励能量消失的情况下,这项工作侧重于此在S波通道中的均匀和各向同性超氟,分析了零(常规超导体),一个或两个球形费米表面,分析了这些候选相的稳定条件。发现具有一个FERMI表面的无间隙状态在BEC区域中稳定,而具有两个FERMI表面的无形状态在所有参数空间中不稳定。结果可以应用于超薄的Fermionic Atom系统。

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