arXiv · 2303.16676
Trade-offs between precision and fluctuations in charging finite-dimensional quantum batteries
Abstract
Within quantum thermodynamics, many tasks are modelled 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 modelled 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.
Explore related subjects
Keep this discovery
Pharnam Bakhshinezhad, Beniamin R. Jablonski, Felix C. Binder, Nicolai Friis. 2023-03-29. Trade-offs between precision and fluctuations in charging finite-dimensional quantum batteries. https://doi.org/10.1103/physreve.109.014131
Cite the original work for its findings. Save a collection to share your selection of sources.