Data di Pubblicazione:
2023
Abstract:
We report on the experimental quantification of the contribution to non-equilibrium entropy production stemming from the quantum coherence content in the initial state of a qubit exposed to both coherent driving and dissipation. Our experimental demonstration builds on the exquisite experimental control of the spin state of a nitrogen-vacancy defect in diamond and is underpinned, theoretically, by the formulation of a generalized fluctuation theorem designed to track the effects of quantum coherence. Our results provide significant evidence of the possibility to pinpoint the genuinely quantum mechanical contributions to the thermodynamics of non-equilibrium quantum processes in an open quantum systems scenario.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
Quantum coherence; Entropy production; Open quantum systems; Nitrogen-vacancy defect in diamond; End-point measurement scheme
Elenco autori:
HERNANDEZ GOMEZ, Santiago; Trombettoni, Andrea; Fabbri, Nicole; Gherardini, Stefano
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