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首页> 外文期刊>Physical review, B >Systematic study of the superconducting critical temperature in two- and three-dimensional tight-binding models: A possible scenario for superconducting H3S
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Systematic study of the superconducting critical temperature in two- and three-dimensional tight-binding models: A possible scenario for superconducting H3S

机译:二维和三维紧密结合模型中超导临界温度的系统研究:超导H3S的可能情况

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摘要

Ever since BCS theory was first formulated it was recognized that a large electronic density of states at the Fermi level was beneficial to enhancing T-c. The A15 compounds and the high temperature cuprate materials both have had an enormous amount of effort devoted to studying the possibility that such peaks play an important role in the high critical temperatures existing in these compounds. Here we provide a systematic study of the effect of these peaks on the superconducting transition temperature for a variety of tight-binding models of simple structures, both in two and three dimensions. In three dimensions large enhancements in T-c can occur, due to van Hove singularities that result in divergences in the density of states. Furthermore, even in more realistic structures, where the van Hove singularity disappears, large enhancements in T-c continue due to the presence of "robust" peaks in the densities of states. Such a peak, recently identified in the bcc structure of H3S, is likely the result of such a van Hove singularity. In certain regimes, anomalies in the isotope coefficient are also expected.
机译:自从最初提出BCS理论以来,人们就认识到,费米能级的大电子态密度有助于增强T-c。 A15化合物和高温铜酸盐材料都付出了巨大的努力来研究这种峰在这些化合物中存在的高临界温度中起重要作用的可能性。在这里,我们针对二维和三维的各种简单结构的紧密结合模型,对这些峰对超导转变温度的影响进行了系统的研究。在三个维度上,由于van Hove奇异性导致状态密度的差异,T-c可能会大大提高。此外,即使在更现实的结构中,凡·霍夫奇异性消失了,由于状态密度中存在“健壮”的峰,T-c的大量增强仍在继续。最近在H3S的bcc结构中发现的这种峰很可能是van Hove奇异性的结果。在某些情况下,同位素系数也可能出现异常。

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