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Superconductor-Insulator Transition and Fermi-Bose Crossovers

机译:超导体 - 绝缘体过渡和费米母线交叉

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The direct transition from an insulator to a superconductor (SC) in Fermi systems is a problem of long-standing interest, which necessarily goes beyond the standard BCS paradigm of superconductivity as a Fermi surface instability. We introduce here a simple, translationally invariant lattice fermion model that undergoes a SC-insulator transition (SIT) and elucidate its properties using analytical methods and quantum Monte?Carlo simulations. We show that there is a fermionic band insulator to bosonic insulator crossover in the insulating phase and a BCS-to-BEC crossover in the SC. The SIT is always found to be from a bosonic insulator to a BEC-like SC, with an energy gap for fermions that remains finite across the SIT. The energy scales that go critical at the SIT are the gap to pair excitations in the insulator and the superfluid stiffness in the SC. In addition to giving insight into important questions about the SIT in solid-state systems, our model should be experimentally realizable using ultracold fermions in optical lattices.
机译:从绝缘体到FERMI系统中的超导体(SC)的直接过渡是长期兴趣的问题,这必然超越标准的BCS范例作为费米表面不稳定性。我们在这里介绍一种简单的翻译不变的格子FERMION模型,经历了SC-Insulator过渡(SIT),并使用分析方法和量子蒙特素阐明其性质.Carlo模拟。我们表明,在绝缘阶段中有一个铁差管带绝缘体,在绝缘相中和SC中的BCS-TO-BEC交叉。静止总是发现从旋转绝缘体到BEC样SC,为静置静止有限的费米体的能隙。在静坐临界的能量尺度是在SC中对绝缘体和超流刚度进行兴奋的差距。除了在固态系统中深入了解坐在坐垫的重要问题之外,我们的模型应该在光学格子中使用超级码头进行实验可实现。

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