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致密固态氢中的拓扑表面态

Topological Surface States in Dense Solid Hydrogen.

作者信息

Naumov Ivan I, Hemley Russell J

机构信息

Geophysical Laboratory, Carnegie Institution of Washington, Washington, D.C. 20015, USA.

Department of Civil and Environmental Engineering, The George Washington University, Washington, D.C. 20052, USA.

出版信息

Phys Rev Lett. 2016 Nov 11;117(20):206403. doi: 10.1103/PhysRevLett.117.206403. Epub 2016 Nov 10.

Abstract

Metallization of dense hydrogen and associated possible high-temperature superconductivity represents one of the key problems of physics. Recent theoretical studies indicate that before becoming a good metal, compressed solid hydrogen passes through a semimetallic stage. We show that such semimetallic phases predicted to be the most stable at multimegabar (∼300  GPa) pressures are not conventional semimetals: they exhibit topological metallic surface states inside the bulk "direct" gap in the two-dimensional surface Brillouin zone; that is, metallic surfaces may appear even when the bulk of the material remains insulating. Examples include hydrogen in the Cmca-12 and Cmca-4 structures; Pbcn hydrogen also has metallic surface states but they are of a nontopological nature. The results provide predictions for future measurements, including probes of possible surface superconductivity in dense hydrogen.

摘要

致密氢的金属化及相关的可能高温超导性是物理学的关键问题之一。近期理论研究表明,压缩固态氢在成为良金属之前会经历一个半金属阶段。我们发现,预测在多兆巴(约300吉帕)压力下最稳定的此类半金属相并非传统半金属:它们在二维表面布里渊区的体“直接”带隙内展现出拓扑金属表面态;也就是说,即便材料主体仍为绝缘态,金属表面仍可能出现。例子包括具有Cmca - 12和Cmca - 4结构的氢;具有Pbcn结构的氢也有金属表面态,但它们是非拓扑性质的。这些结果为未来测量提供了预测,包括对致密氢中可能的表面超导性的探测。

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