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首页> 外文期刊>Nuclear physics, B >The phase transitions between Z n × Z n bosonic topological phases in 1+1D, and a constraint on the central charge for the critical points between bosonic symmetry protected topological phases
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The phase transitions between Z n × Z n bosonic topological phases in 1+1D, and a constraint on the central charge for the critical points between bosonic symmetry protected topological phases

机译: Z n × Z n 1 + 1D的玻色子拓扑相,以及对玻色子之间临界点中心电荷的约束对称保护的拓扑阶段

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The study of continuous phase transitions triggered by spontaneous symmetry breaking has brought revolutionary ideas to physics. Recently, through the discovery of symmetry protected topological phases, it is realized that continuous quantum phase transition can also occur between states with the same symmetry but different topology. Here we study a specific class of such phase transitions in 1 + 1 dimensions – the phase transition between bosonic topological phases protected by Z n × Z n . We find in all cases the critical point possesses two gap opening relevant operators: one leads to a Landau-forbidden symmetry breaking phase transition and the other to the topological phase transition. We also obtained a constraint on the central charge for general phase transitions between symmetry protected bosonic topological phases in 1 + 1 D .
机译:自发对称断裂引发的连续相变的研究为物理学带来了革命性的思想。近来,通过发现对称保护的拓扑相,认识到在相同对称但拓扑不同的状态之间也可能发生连续的量子相变。在这里,我们以1 +1维的形式研究这类相变的特定类别-受Z n×Z n保护的玻色子拓扑相之间的相变。我们发现,在所有情况下,临界点都具有两个缺口开放相关算子:一个导致Landau禁止对称性破坏相变,另一个导致拓扑相变。我们还获得了在1 + 1 D中对称受保护的玻色子拓扑相之间一般相变的中心电荷约束。

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