首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Topological quantum phase transition between quantum spin hall state and quantum anomalous hall state
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Topological quantum phase transition between quantum spin hall state and quantum anomalous hall state

机译:量子自旋霍尔态和量子异常霍尔态之间的拓扑量子相变

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In this paper, starting from a lattice model of topological insulators, we study the quantum phase transitions among different quantum states, including quantum spin Hall state, quantum anomalous Hall state and normal band insulator state by calculating their topological properties (edge states, quantized spin Hall conductivities, and the number of zero mode on a π-flux). We find that at the topological quantum phase transitions (TQPTs), the topological "order parameter" spin Chern number will jump. And since the masses of the nodal fermions will change sign, the third derivative of ground-state energy is nonanalytic. In addition, we discuss the finite temperature properties and the stability of the TQPTs.
机译:本文从拓扑绝缘体的晶格模型出发,通过计算其拓扑性质(边缘态,量子化自旋),研究了不同量子态之间的量子相变,包括量子自旋霍尔态,量子反常霍尔态和正带绝缘子态。霍尔电导率以及π磁通上的零模数)。我们发现,在拓扑量子相变(TQPT)时,拓扑“阶参数”自旋Chern数将跳跃。而且由于节点费米子的质量将改变符号,因此基态能量的三阶导数是非解析的。另外,我们讨论了有限温度特性和TQPT的稳定性。

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