Profil

CAVINA Vasco

Main Referenced Co-authors
ESPOSITO, Massimiliano  (3)
Giovannetti, Vittorio (3)
Farina, Donato (2)
Barbieri, Marco (1)
Cimini, Valeria (1)
Main Referenced Keywords
Physics - Statistical Mechanics (1); Quantum Physics (1);
Main Referenced Disciplines
Physics (6)

Publications (total 6)

The most downloaded
114 downloads
Fei, Z., Freitas, N., Cavina, V., Quan, H. T., & Esposito, M. (2020). Work Statistics across a Quantum Phase Transition. Physical Review Letters, 124 (17), 170603. doi:10.1103/PhysRevLett.124.170603 https://hdl.handle.net/10993/45984

The most cited

49 citations (Scopus®)

Erdman, P. A., Cavina, V., Fazio, R., Taddei, F., & Giovannetti, V. (2019). Maximum power and corresponding efficiency for two-level heat engines and refrigerators: optimality of fast cycles. New Journal of Physics. doi:10.1088/1367-2630/ab4dca https://hdl.handle.net/10993/45992

CAVINA, V., Kadijani, S. S., ESPOSITO, M., & SCHMIDT, T. (2023). A convenient Keldysh contour for thermodynamically consistent perturbative and semiclassical expansions. ORBilu-University of Luxembourg. https://orbilu.uni.lu/handle/10993/57544.

SORET, A., CAVINA, V., & ESPOSITO, M. (December 2022). Thermodynamic consistency of quantum master equations. Physical Review. A, 106 (6), 062209. doi:10.1103/PhysRevA.106.062209
Peer reviewed

Gianani, I., Farina, D., Barbieri, M., Cimini, V., Cavina, V., & Giovannetti, V. (2020). Discrimination of thermal baths by single-qubit probes. Physical Review Research. doi:10.1103/PhysRevResearch.2.033497
Peer reviewed

Fei, Z., Freitas, N., Cavina, V., Quan, H. T., & Esposito, M. (2020). Work Statistics across a Quantum Phase Transition. Physical Review Letters, 124 (17), 170603. doi:10.1103/PhysRevLett.124.170603
Peer Reviewed verified by ORBi

Farina, D., Cavina, V., & Giovannetti, V. (2019). Quantum bath statistics tagging. Physical Review. A. doi:10.1103/PhysRevA.100.042327
Peer reviewed

Erdman, P. A., Cavina, V., Fazio, R., Taddei, F., & Giovannetti, V. (2019). Maximum power and corresponding efficiency for two-level heat engines and refrigerators: optimality of fast cycles. New Journal of Physics. doi:10.1088/1367-2630/ab4dca
Peer Reviewed verified by ORBi

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