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Universal topological quench dynamics for Z_(2)topological phases 被引量:1
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作者 Lin Zhang Wei Jia Xiong-Jun Liu 《Science Bulletin》 SCIE EI CSCD 2022年第12期1236-1242,M0004,共8页
The free-fermion topological phases with Z_(2)invariants cover a broad range of topological states,including the time-reversal invariant topological insulators,and are defined on the equilibrium ground states.Whether ... The free-fermion topological phases with Z_(2)invariants cover a broad range of topological states,including the time-reversal invariant topological insulators,and are defined on the equilibrium ground states.Whether such equilibrium topological phases have universal correspondence to far-from-equilibrium quantum dynamics is a fundamental issue of both theoretical and experimental importance.Here we uncover the universal topological quench dynamics linking to these equilibrium topological phases of different dimensionality and symmetry classes in the tenfold way,with a general framework being established.We show a novel result that a generic d-dimensional topological phase represented by Dirac type Hamiltonian and with Z_(2)invariant defined on high symmetry momenta can be characterized by topology reduced to certain arbitrary discrete momenta of Brillouin zone called the highest-order bandinversion surfaces.Such dimension-reduced topology has unique correspondence to the topological pattern emerging in far-from-equilibrium quantum dynamics by quenching the system from trivial phase to the topological regime,rendering the dynamical hallmark of the equilibrium topological phase.This work completes the dynamical characterization for the full tenfold classes of topological phases,which can be partially extended to even broader topological phases protected by lattice symmetries and in non-Dirac type systems,and shall advance widely the research in theory and experiment. 展开更多
关键词 Z_(2)topological quantum phase Band-inversion surface Quench dynamics topological characterization Quantum simulation
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拓扑相MoS_(2)电子结构及光学性质的第一性原理研究
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作者 吴文静 张子涵 《原子与分子物理学报》 CAS 北大核心 2023年第4期142-150,共9页
基于密度泛函理论的第一性原理对二维拓扑相1T′-MoS_(2)和2M-MoS_(2)的电子结构、有效质量和光学性质进行研究,并将其与二维H-MoS_(2)进行对比分析.研究表明,电子有效质量大小关系为:2M-MoS_(2)<T′-MoS_(2)<H-MoS_(2),空穴有效... 基于密度泛函理论的第一性原理对二维拓扑相1T′-MoS_(2)和2M-MoS_(2)的电子结构、有效质量和光学性质进行研究,并将其与二维H-MoS_(2)进行对比分析.研究表明,电子有效质量大小关系为:2M-MoS_(2)<T′-MoS_(2)<H-MoS_(2),空穴有效质量大小关系为:T′-MoS_(2)<2M-MoS_(2)<H-MoS_(2),但2M-MoS_(2)的空穴有效质量和T′-MoS_(2)相差不大,二者均适用于高性能电子器件.由于拓扑相1T′-MoS_(2)和2M-MoS_(2)均存在能带反转,导致带间相关性以及导带和价带的波函数重叠增强,进而光电流响应增强,二者的光学性质均优于H-MoS_(2).2M-MoS_(2)具有较大的吸收系数和光电导率,2M-MoS_(2)对红外光和紫外光有着优良的吸收性质,T′-MoS_(2)在可见光波段和紫外光的波段有较大的吸收峰.研究结果进一步丰富了MoS_(2)的拓扑相,并为基于MoS_(2)拓扑相的高性能光电探测器件的设计和应用提供参考. 展开更多
关键词 MoS_(2)拓扑相 能带反转 电子结构 光学性质
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