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首页> 外文期刊>Physical Review, A >Kosterlitz-Thouless transition and vortex-antivortex lattice melting in two-dimensional Fermi gases with p- or d-wave pairing
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Kosterlitz-Thouless transition and vortex-antivortex lattice melting in two-dimensional Fermi gases with p- or d-wave pairing

机译:Kosterlitz-Thousless过渡和涡旋 - 反紫外线熔化在二维Fermi气体中,具有P-或D波配对

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摘要

We present a theoretical study of the finite-temperature Kosterlitz-Thouless (KT) and vortex-antivortex lattice (VAL) melting transitions in two-dimensional Fermi gases with p- or d-wave pairing. For both pairings, when the interaction is tuned from weak to strong attractions, we observe a quantum phase transition from the Bardeen-Cooper-Schrieffer (BCS) superfluidity to the Bose-Einstein condensation (BEC) of difermions. The KT and VAL transition temperatures increase during this BCS-BEC transition and approach constant values in the deep BEC region. The BCS-BEC transition is characterized by the nonanalyticities of the chemical potential, the superfluid order parameter, and the sound velocities as functions of the interaction strength at both zero and finite temperatures; however, the temperature effect tends to weaken the nonanalyticities compared to the zero-temperature case. The effect of mismatched Fermi surfaces on the d-wave pairing is also studied.
机译:我们介绍了有限温度Kosterlitz-Thousless(KT)和Vortex-Antivortex晶格(VAL)的理论研究,其二维FERMI气体熔化过渡,具有P-或D波配对。 对于两次配对,当互动从弱到强景点调整时,我们观察来自Bardeen-Cooper-Schrieffer(BCS)超浊的量子相转变为伴随的血糖凝结(BEC)。 在该BCS-BEC的转变期间,KT和VAL过渡温度增加,并在深度区区域中接近恒定值。 BCS-BEC转变的特征在于化学电位,超流顺序参数和声速,作为零和有限温度的相互作用强度的函数的非分析性; 然而,与零温度壳体相比,温度效应趋于削弱非分析性。 还研究了不匹配的费米表面对D波配对的影响。

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