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Topological nodal line semimetals with and without spin-orbital coupling

机译:具有和不具有自旋 - 轨道耦合的拓扑节点线半金属

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摘要

We theoretically study three-dimensional topological semimetals (TSMs) with nodal lines protected by crystalline symmetries. Compared to TSMs with point nodes, e.g., Weyl semimetals and Dirac semimetals, where the conduction and the valence bands touch at discrete points, in these TSMs the two bands cross at closed lines in the Brillouin zone. We propose two different classes of symmetry protected nodal lines in the absence and in the presence of spin-orbital coupling (SOC), respectively. In the former, we discuss nodal lines that are protected by a combination of inversion symmetry and time-reversal symmetry, yet, unlike previously studied nodal lines in the same symmetry class, each nodal line has a Z[subscript 2] monopole charge and can only be created (annihilated) in pairs. In the second class, with SOC, we show that a nonsymmorphic symmetry (screw axis) protects a four-band crossing nodal line in systems having both inversion and time-reversal symmetries.
机译:我们从理论上研究了具有受晶体对称性保护的结线的三维拓扑半金属(TSM)。与具有点节点的TSM相比,例如Weyl半金属和Dirac半金属,其中导带和价带在不连续的点接触,在这些TSM中,两个带在布里渊区的闭合线处交叉。我们提出了两种不同类型的对称保护的节线,分别在不存在和存在自旋轨道耦合(SOC)的情况下。在前者中,我们讨论了由反演对称性和时间反转对称性组合保护的节点线,但是,与先前研究的同一对称性类的节点线不同,每条节点线都具有Z [下标2]单极电荷,并且可以只能成对创建(an灭)。在使用SOC的第二类中,我们证明了非对称对称(螺杆轴)在具有反转和时间反转对称性的系统中保护了四频带交叉节点线。

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