Boosting Work Extraction in Quantum Batteries via Continuous Environment Monitoring
Academic Article
Publication Date:
2026
Citation:
Boosting Work Extraction in Quantum Batteries via Continuous Environment Monitoring / G. Cenedese, G.B.. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 137:5(2026 Jul 29), pp. 050406.1-050406.12. [10.1103/f591-hx6x]
abstract:
During the charging process, interactions between a quantum battery and its charger generally generate
quantum correlations, which may reduce the amount of work extractable from the battery alone. We show
that, by coupling the system with an environment that can be continuously monitored, one can weaken
these correlations and enhance work extraction beyond what is achievable in the ideal (closed system) limit.
This general mechanism is illustrated using both a cavity-mediated spin-spin and a Dicke quantum battery
model.
quantum correlations, which may reduce the amount of work extractable from the battery alone. We show
that, by coupling the system with an environment that can be continuously monitored, one can weaken
these correlations and enhance work extraction beyond what is achievable in the ideal (closed system) limit.
This general mechanism is illustrated using both a cavity-mediated spin-spin and a Dicke quantum battery
model.
IRIS type:
01 - Articolo su periodico
List of contributors:
G. Cenedese, G. Benenti, D. Ferraro, M.G. Genoni
Link to information sheet: