Wieder Benjamin J, Kim Youngkuk, Rappe A M, Kane C L
Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, USA.
The Makineni Theoretical Laboratories, Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, USA.
Phys Rev Lett. 2016 May 6;116(18):186402. doi: 10.1103/PhysRevLett.116.186402. Epub 2016 May 5.
We study a class of Dirac semimetals that feature an eightfold-degenerate double Dirac point. We show that 7 of the 230 space groups can host such Dirac points and argue that they all generically display linear dispersion. We introduce an explicit tight-binding model for space groups 130 and 135. Space group 135 can host an intrinsic double Dirac semimetal with no additional states at the Fermi energy. This defines a symmetry-protected topological critical point, and we show that a uniaxial compressive strain applied in different directions leads to topologically distinct insulating phases. In addition, the double Dirac semimetal can accommodate topological line defects that bind helical modes. Connections are made to theories of strongly interacting filling-enforced semimetals, and potential materials realizations are discussed.
我们研究了一类具有八重简并双狄拉克点的狄拉克半金属。我们表明,230种空间群中有7种可以容纳此类狄拉克点,并认为它们一般都呈现线性色散。我们为空间群130和135引入了一个明确的紧束缚模型。空间群135可以容纳一种本征双狄拉克半金属,其费米能级处没有额外的态。这定义了一个对称性保护的拓扑临界点,并且我们表明在不同方向施加的单轴压缩应变会导致拓扑上不同的绝缘相。此外,双狄拉克半金属可以容纳束缚螺旋模式的拓扑线缺陷。我们建立了与强相互作用填充增强半金属理论的联系,并讨论了潜在的材料实现。