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Dynamical quantum phase transitions following double quenches: persistence of the initial state vs dynamical phases

DOAJ
Authors: Hadi Cheraghi, Nicholas Sedlmayr

Year

2023

Paper ID

41488

Status

Peer-reviewed

Abstract Read

~2 min

Abstract Words

126

Citations

16

Abstract

Dynamical quantum phase transitions (DQPTs) can occur following quenches in quantum systems when the rate function, a dynamical analogue of the free energy, becomes non-analytic at critical times. Here we exhaustively investigate in an exemplary model how the dynamically evolving state responds to a second quench. We demonstrate that for quenches where the initial and final Hamiltonian belong to different phases always result in DQPTs, irrespective of the intermediate quench and dynamics or the time of the second quench. However, if the initial and final Hamiltonian belong to the same equilibrium phase then the intermediate Hamiltonian must belong to a different phase. In this case, the second quench time in relation to the critical times of the first quench becomes crucial to the existence of DQPTs.

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