English

Quantum speed-up in collisional battery charging

Quantum Physics 2021-09-08 v2

Abstract

We present a collision model for the charging of a quantum battery by identical nonequilibrium qubit units. When the units are prepared in a mixture of energy eigenstates, the energy gain in the battery can be described by a classical random walk, where both average energy and variance grow linearly with time. Conversely, when the qubits contain quantum coherence, interference effects buildup in the battery and lead to a faster spreading of the energy distribution, reminiscent of a quantum random walk. This can be exploited for faster and more efficient charging of a battery initialized in the ground state. Specifically, we show that coherent protocols can yield higher charging power than any possible incoherent strategy, demonstrating a quantum speed-up at the level of a single battery. Finally, we characterize the amount of extractable work from the battery through the notion of ergotropy.

Keywords

Cite

@article{arxiv.2105.01863,
  title  = {Quantum speed-up in collisional battery charging},
  author = {Stella Seah and Martí Perarnau-Llobet and Géraldine Haack and Nicolas Brunner and Stefan Nimmrichter},
  journal= {arXiv preprint arXiv:2105.01863},
  year   = {2021}
}

Comments

4 pages, 5 figures

R2 v1 2026-06-24T01:47:25.620Z