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超越狄拉克和外尔费米子:常规晶体中的非常规准粒子。

Beyond Dirac and Weyl fermions: Unconventional quasiparticles in conventional crystals.

机构信息

Princeton Center for Theoretical Science, Princeton University, Princeton, NJ 08544, USA.

Department of Physics, Princeton University, Princeton, NJ 08544, USA.

出版信息

Science. 2016 Aug 5;353(6299):aaf5037. doi: 10.1126/science.aaf5037. Epub 2016 Jul 21.

Abstract

In quantum field theory, we learn that fermions come in three varieties: Majorana, Weyl, and Dirac. Here, we show that in solid-state systems this classification is incomplete, and we find several additional types of crystal symmetry-protected free fermionic excitations. We exhaustively classify linear and quadratic three-, six-, and eight-band crossings stabilized by space group symmetries in solid-state systems with spin-orbit coupling and time-reversal symmetry. Several distinct types of fermions arise, differentiated by their degeneracies at and along high-symmetry points, lines, and surfaces. Some notable consequences of these fermions are the presence of Fermi arcs in non-Weyl systems and the existence of Dirac lines. Ab initio calculations identify a number of materials that realize these exotic fermions close to the Fermi level.

摘要

在量子场论中,我们了解到费米子有三种类型:马约拉纳、外尔和狄拉克。在这里,我们表明在固态系统中,这种分类是不完整的,我们发现了几种额外的晶体对称保护的自由费米子激发类型。我们详尽地分类了在具有自旋轨道耦合和时间反演对称性的固态系统中,由空间群对称性稳定的线性和二次三、六和八能带交叉。出现了几种不同类型的费米子,它们在高对称点、线和面上的简并度不同。这些费米子的一些显著后果是在非外尔系统中存在费米弧和狄拉克线。从头算计算确定了一些在费米能级附近实现这些奇异费米子的材料。

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