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- W4300818835 abstract "We consider Markovian open quantum systems subject to stochastic resetting, which means that the dissipative time evolution is reset at randomly distributed times to the initial state. We show that the ensuing dynamics is non-Markovian and has the form of a generalized Lindblad equation. Interestingly, the statistics of quantum-jumps can be exactly derived. This is achieved by combining techniques from the thermodynamics of quantum-jump trajectories with the renewal structure of the resetting dynamics. We consider as an application of our analysis a driven two-level and an intermittent three-level system. Our findings show that stochastic resetting may be exploited as a tool to tailor the statistics of the quantum-jump trajectories and the dynamical phases of open quantum systems." @default.
- W4300818835 created "2022-10-04" @default.
- W4300818835 creator A5015979351 @default.
- W4300818835 creator A5033783486 @default.
- W4300818835 creator A5068042572 @default.
- W4300818835 date "2022-10-04" @default.
- W4300818835 modified "2023-09-30" @default.
- W4300818835 title "Thermodynamics of quantum-jump trajectories of open quantum systems subject to stochastic resetting" @default.
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- W4300818835 doi "https://doi.org/10.21468/scipostphys.13.4.079" @default.
- W4300818835 hasPublicationYear "2022" @default.
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