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Superconductivity close to the Mott state: From condensed-matter systems to superfluidity in optical lattices

机译:接近莫特态的超导性:从凝聚态系统到光学晶格中的超流态

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Since the discovery of high-temperature superconductivity in 1986 by Bednorz and Muller, great efforts have been devoted to finding out how and why it works. From the d-wave symmetry of the order parameter, the importance of anti ferromagnetic fluctuations, and the presence of a mysterious pseudogap phase close to the Mott state, one can conclude that high-T-c superconductors are clearly distinguishable from the well-understood BCS superconductors. The d-wave Superconducting state can be understood through a Gutzwiller-type projected BCS wavefunction. In this review article, we revisit the Hubbard model at half-filling and focus on the emergence of exotic superconductivity with d-wave symmetry in the vicinity of the Mott state, starting from ladder systems and then studying the dimensional crossovers to higher dimensions. This allows to confirm that short-range antiferromagnetic fluctuations can mediate superconductivity with d-wave symmetry. Ladders are also nice prototype systems allowing to demonstrate the truncation of the Fermi surface and the emergence of a Resonating Valence Bond (RVB) state with preformed pairs in the vicinity of the Mott state. In two dimensions, a similar scenario emerges from renormalization group arguments. We also discuss theoretical predictions for the cl-wave superconducting phase as well as the pseudogap phase, and address the crossover to the overdoped regime. Finally, cold atomic systems with tunable parameters also provide a complementary insight into this outstanding problem.
机译:自从Bednorz和Muller于1986年发现高温超导以来,人们一直在努力寻找其工作方式和原因。从阶数参数的d波对称性,反铁磁涨落的重要性以及接近Mott态的神秘伪间隙相的存在,可以得出结论,高Tc超导体显然与公认的BCS超导体有明显区别。 。 d波超导状态可以通过Gutzwiller型投影BCS波函数来理解。在这篇评论文章中,我们将在半填充时重新研究Hubbard模型,并着重研究莫特状态附近具有d波对称性的奇异超导的出现,从梯子系统开始,然后研究尺寸跨度到更高尺寸的情况。这可以确认短程反铁磁波动可以介导具有d波对称性的超导。梯子也是很好的原型系统,可以演示费米表面的截断和共振价键(RVB)状态的出现,其中在Mott状态附近有预成对。在两个维度上,重归一化组参数也出现了类似的情况。我们还讨论了有关cl波超导相以及伪间隙相的理论预测,并讨论了向过掺杂体系的交叉。最后,具有可调参数的冷原子系统也可以提供对这一突出问题的补充见解。

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