Bakhshinezhad, P., Jablonski, B. R., Binder, F. C., & Friis, N. (2024). Trade-offs between precision and fluctuations in charging finite-dimensional quantum batteries. Physical Review E, 109(1), Article 014131. https://doi.org/10.1103/PhysRevE.109.014131
E141-08 - Forschungsbereich Quantum Optics and Quantum Information
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Zeitschrift:
Physical Review E
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ISSN:
2470-0045
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Datum (veröffentlicht):
Jan-2024
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Umfang:
17
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Verlag:
American Physical Society (APS)
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Peer Reviewed:
Ja
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Keywords:
quantum batteries; quantum thermodynamics
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Abstract:
Within quantum thermodynamics, many tasks are modeled by processes that require work sources represented by out-of-equilibrium quantum systems, often dubbed quantum batteries, in which work can be deposited or from which work can be extracted. Here we consider quantum batteries modeled as finite-dimensional quantum systems initially in thermal equilibrium that are charged via cyclic Hamiltonian processes. We present optimal or near-optimal protocols for N identical two-level systems and individual d-level systems with equally spaced energy gaps in terms of the charging precision and work fluctuations during the charging process. We analyze the trade-off between these figures of merit as well as the performance of local and global operations.
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Projekttitel:
Verschränkungsbasierte Zertifizierung von Quantentechnologie: P 36478 (FWF - Österr. Wissenschaftsfonds) Resources for flexible quantum information processing: P 31339 (FWF - Österr. Wissenschaftsfonds) Emergence of Objective Reality: from Qubit to Oscilloscope: ID: 62423 (John Templeton Foundation) Control and complexity in quantum statistical mechanics: 101043705 (European Commission) High-Performance integrated Quantum Computing: 897481 (FFG - Österr. Forschungsförderungs- gesellschaft mbH)
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Projekt (extern):
Austrian Research Promotion Agency (FFG)
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Projektnummer:
FO999897481
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Forschungsschwerpunkte:
Quantum Modeling and Simulation: 30% Quantum Metrology and Precision Measurements: 30% Design and Engineering of Quantum Systems: 40%