Delmonte Anna, Crescente Alba, Carrega Matteo, Ferraro Dario, Sassetti Maura
Dipartimento di Fisica, Università di Genova, Via Dodecaneso 33, 16146 Genova, Italy.
SPIN-CNR, Via Dodecaneso 33, 16146 Genova, Italy.
Entropy (Basel). 2021 May 14;23(5):612. doi: 10.3390/e23050612.
We consider a quantum battery that is based on a two-level system coupled with a cavity radiation by means of a two-photon interaction. Various figures of merit, such as stored energy, average charging power, energy fluctuations, and extractable work are investigated, considering, as possible initial conditions for the cavity, a Fock state, a coherent state, and a squeezed state. We show that the first state leads to better performances for the battery. However, a coherent state with the same average number of photons, even if it is affected by stronger fluctuations in the stored energy, results in quite interesting performance, in particular since it allows for almost completely extracting the stored energy as usable work at short enough times.
我们考虑一种基于两能级系统的量子电池,该系统通过双光子相互作用与腔辐射耦合。研究了各种品质因数,如存储能量、平均充电功率、能量涨落和可提取功,并将福克态、相干态和压缩态作为腔的可能初始条件进行了考虑。我们表明,第一种状态会使电池具有更好的性能。然而,具有相同平均光子数的相干态,即使其存储能量受到更强的涨落影响,也会产生相当有趣的性能,特别是因为在足够短的时间内,它几乎可以将存储的能量完全提取为可用功。