We develop a microscopic theory for biasing the quantum trajectories of an open quantum system, which renders rare trajectories typical. To this end we consider a discrete-time quantum dynamics, where the open system collides sequentially with qubit probes which are then measured. A theoretical framework is built in terms of thermodynamic functionals in order to characterize its quantum trajectories (each embodied by a sequence of measurement outcomes). We show that the desired biasing is achieved by suitably modifying the Kraus operators describing the discrete open system dynamics. From a microscopical viewpoint and for short collision times, this corresponds to adding extra collisions which enforce the system to follow a desired rare trajectory. The above extends the theory of biased quantum trajectories from Lindblad-like dynamics to sequences of arbitrary dynamical maps, providing at once a transparent physical interpretation.

Microscopic biasing of discrete-time quantum trajectories / D., C., G., B., I., L., A., C., S., L., G., M.P., F., C., Carollo, F.. - In: QUANTUM SCIENCE AND TECHNOLOGY. - ISSN 2058-9565. - 6:4(2021), pp. 1-9. [10.1088/2058-9565/ac15e2]

Microscopic biasing of discrete-time quantum trajectories

CAROLLO F
2021

Abstract

We develop a microscopic theory for biasing the quantum trajectories of an open quantum system, which renders rare trajectories typical. To this end we consider a discrete-time quantum dynamics, where the open system collides sequentially with qubit probes which are then measured. A theoretical framework is built in terms of thermodynamic functionals in order to characterize its quantum trajectories (each embodied by a sequence of measurement outcomes). We show that the desired biasing is achieved by suitably modifying the Kraus operators describing the discrete open system dynamics. From a microscopical viewpoint and for short collision times, this corresponds to adding extra collisions which enforce the system to follow a desired rare trajectory. The above extends the theory of biased quantum trajectories from Lindblad-like dynamics to sequences of arbitrary dynamical maps, providing at once a transparent physical interpretation.
2021
biased dynamics; discrete-time quantum dynamics; collision modelquantum trajectories
01 Pubblicazione su rivista::01a Articolo in rivista
Microscopic biasing of discrete-time quantum trajectories / D., C., G., B., I., L., A., C., S., L., G., M.P., F., C., Carollo, F.. - In: QUANTUM SCIENCE AND TECHNOLOGY. - ISSN 2058-9565. - 6:4(2021), pp. 1-9. [10.1088/2058-9565/ac15e2]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1765281
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