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首页> 外文期刊>Physical review >Fulde-Ferrell-Larkin-Ovchinnikov states and quantum oscillations in mesoscopic superconductors and superfluid ultracold Fermi gases
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Fulde-Ferrell-Larkin-Ovchinnikov states and quantum oscillations in mesoscopic superconductors and superfluid ultracold Fermi gases

机译:介观超导体和超流超冷费米气体中的Fulde-Ferrell-Larkin-Ovchinnikov态和量子振荡

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摘要

We have studied the distinctive features of the Fulde-Ferrel-Larkin-Ovchinnikov (FFLO) instability and phase transitions in two-dimensional (2D) mesoscopic superconductors placed in magnetic field of arbitrary orientation and rotating superfluid Fermi gases with imbalanced state populations. Using a generalized version of the phenomenological Ginzburg-Landau theory we have shown that the FFLO states are strongly modified by the effect of the trapping potential confining the condensate. The phenomenon of the inhomogeneous state formation is determined by the interplay of three length scales: (ⅰ) length scale of the FFLO instability; (ⅱ) 2D system size; (ⅲ) length scale associated with the orbital effect caused either by the Fermi condensate rotation or magnetic field component applied perpendicular to the superconducting disk. We have studied this interplay and resulting quantum oscillation effects in both superconducting and superfluid finite-size systems with FFLO instability and described the hallmarks of the FFLO phenomenon in a restricted geometry. The finite size of the system is shown to affect strongly the conditions of the observability of switching between the states with different vorticities.
机译:我们研究了二维(2D)介观超导体中Fulde-Ferrel-Larkin-Ovchinnikov(FFLO)的不稳定性和相变的独特特征,该超导体置于任意方向的磁场中,并且旋转的超流体费米气体具有不平衡的状态种群。使用现象学的Ginzburg-Landau理论的一般化版本,我们已经表明,FFLO态会因俘获势限制凝结水的作用而发生强烈变化。不均匀状态形成的现象取决于三个长度尺度的相互作用:(ⅰ)FFLO不稳定性的长度尺度; (ⅱ)2D系统大小; (ⅲ)与费米冷凝物旋转或垂直于超导盘施加的磁场分量引起的轨道效应相关的长度标度。我们已经研究了具有FFLO不稳定性的超导和超流体有限尺寸系统中的这种相互作用以及由此产生的量子振荡效应,并在有限的几何形状中描述了FFLO现象的特征。系统的有限大小显示出强烈影响在具有不同涡度的状态之间切换的可观察性条件。

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