We study the time evolution of geometric phases of one dimensional topological models under the quench dynamics. Taking the Creutz ladder model as an example, it is found that the Berry phase is fixed as the parameter is suddenly tuned across the topological phase boundary, given that the chiral symmetry of the model is preserved. At finite temperature, the Uhlmann phase displays abrupt jumps between the two quantized values, which indicates the topological transition at certain times after the quench. Both the Berry and Uhlmann phase will deviate from quantized values if the chiral symmetry of the model is broken. The relation between the Uhlmann phase and Loshmidt rate function under the quench process is also discussed.Comment: 16 pages,...
The topological phase of the Su-Schrieffer-Heeger (SSH) model is known to exhibit two edge states th...
Recently, dynamical anomalies more than critical slowing down are often observed near both the conti...
Dynamical quantum phase transitions can occur following quenches in quantum systems when the rate fu...
We introduce the Uhlmann geometric phase as a tool to characterize symmetry-protected topological ph...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
We study the nonequilibrium time evolution of a variety of one-dimensional (1D) and two-dimensional ...
We employ quench dynamics as an effective tool to probe different universality classes of topologica...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
In most lattice models, the closing of a band gap typically occurs at high-symmetry points in the Br...
We study the slow quenching dynamics (characterized by an inverse rate τ−1) of a one-dimensional tra...
While global quantum quench has been extensively used in the literature to understand the localizati...
The Uhlmann phase, which reflects the holonomy as the purified state of a density matrix traverses a...
An exactly solvable Kitaev model in a two-dimensional square lattice exhibits a topological quantum ...
We study the effect of thermal fluctuation on a sourced quench in a system with $Z_2$ symmetry. We m...
Original article can be found at: http://pra.aps.org/ Copyright American Physical Society. DOI: 10.1...
The topological phase of the Su-Schrieffer-Heeger (SSH) model is known to exhibit two edge states th...
Recently, dynamical anomalies more than critical slowing down are often observed near both the conti...
Dynamical quantum phase transitions can occur following quenches in quantum systems when the rate fu...
We introduce the Uhlmann geometric phase as a tool to characterize symmetry-protected topological ph...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
We study the nonequilibrium time evolution of a variety of one-dimensional (1D) and two-dimensional ...
We employ quench dynamics as an effective tool to probe different universality classes of topologica...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
In most lattice models, the closing of a band gap typically occurs at high-symmetry points in the Br...
We study the slow quenching dynamics (characterized by an inverse rate τ−1) of a one-dimensional tra...
While global quantum quench has been extensively used in the literature to understand the localizati...
The Uhlmann phase, which reflects the holonomy as the purified state of a density matrix traverses a...
An exactly solvable Kitaev model in a two-dimensional square lattice exhibits a topological quantum ...
We study the effect of thermal fluctuation on a sourced quench in a system with $Z_2$ symmetry. We m...
Original article can be found at: http://pra.aps.org/ Copyright American Physical Society. DOI: 10.1...
The topological phase of the Su-Schrieffer-Heeger (SSH) model is known to exhibit two edge states th...
Recently, dynamical anomalies more than critical slowing down are often observed near both the conti...
Dynamical quantum phase transitions can occur following quenches in quantum systems when the rate fu...