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- W2337356168 abstract "Coherent quantum-state manipulation of trapped ions using classical laser fields is a trademark of modern quantum technologies. In this work, we study aspects of work statistics and irreversibility in a single trapped ion due to sudden interaction with the impinging laser. This is clearly an out-of-equilibrium process where work is performed through illumination of an ion by the laser. Starting with the explicit evaluation of the first moments of the work distribution, we proceed to a careful analysis of irreversibility as quantified by the nonequilibrium lag. The treatment employed here is not restricted to the Lamb-Dicke limit, which allows us to investigate the interplay between nonlinearities and irreversibility. We show that in these multiquantum or sideband regimes, variation of the Lamb-Dicke parameter causes a nonmonotonic behavior of the irreversibility indicator. Counterintuitively, we find a working point where nonlinearity helps reversibility, making the sudden quench of the Hamiltonian closer to what would have been obtained quasistatically and isothermally." @default.
- W2337356168 created "2016-06-24" @default.
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- W2337356168 date "2016-07-08" @default.
- W2337356168 modified "2023-10-14" @default.
- W2337356168 title "Nonequilibrium properties of trapped ions under sudden application of a laser" @default.
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- W2337356168 doi "https://doi.org/10.1103/physreva.94.013406" @default.
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