We investigate a quantum battery made of N two-level systems, which is charged by an optical mode via an energy-conserving interaction. We quantify the fraction of energy stored in the battery that can be extracted in order to perform thermodynamic work. We first demonstrate that this quantity is highly reduced by the presence of correlations between the charger and the battery or between the subsystems composing the battery. We then show that the correlation-induced suppression of extractable energy, however, can be mitigated by preparing the charger in a coherent optical state. We conclude by proving that the charger-battery system is asymptotically free of such locking correlations in the N→∞ limit
Quantum battery (QB) is the energy storage and extraction device that is governed by the principles ...
Quantum work capacitances and maximal asymptotic work/energy ratios are figures of merit characteriz...
We demonstrate an asymmetry between the beneficial effects one can obtain using non-local operations...
We investigate a quantum battery made of N two-level systems, which is charged by an optical mode vi...
We study the connection between the charging power of quantum batteries and the fluctuations of the ...
Motivated by a recent disagreement about the claim that fluctuations in the free energy operator bou...
Quantum batteries, composed of quantum cells, are expected to outperform their classical analogs. Th...
We investigate the connection between quantum resources and extractable work in quantum batteries. W...
The possibility of using quantum effects to speed up the charging processes of batteries have been v...
Collective behavior strongly influences the charging dynamics of quantum batteries (QBs). Here, we s...
We present a systematic analysis and classification of several models of quantum batteries involving...
The collective and quantum behavior of many-body systems may be harnessed to achieve fast charging o...
Can collective quantum effects make a difference in a meaningful thermodynamic operation? Focusing o...
We studied the dynamics of entropic uncertainty in Markovian and non-Markovian systems during the ch...
Recently, it has been shown that energy can be deposited on a collection of quantum systems at a rat...
Quantum battery (QB) is the energy storage and extraction device that is governed by the principles ...
Quantum work capacitances and maximal asymptotic work/energy ratios are figures of merit characteriz...
We demonstrate an asymmetry between the beneficial effects one can obtain using non-local operations...
We investigate a quantum battery made of N two-level systems, which is charged by an optical mode vi...
We study the connection between the charging power of quantum batteries and the fluctuations of the ...
Motivated by a recent disagreement about the claim that fluctuations in the free energy operator bou...
Quantum batteries, composed of quantum cells, are expected to outperform their classical analogs. Th...
We investigate the connection between quantum resources and extractable work in quantum batteries. W...
The possibility of using quantum effects to speed up the charging processes of batteries have been v...
Collective behavior strongly influences the charging dynamics of quantum batteries (QBs). Here, we s...
We present a systematic analysis and classification of several models of quantum batteries involving...
The collective and quantum behavior of many-body systems may be harnessed to achieve fast charging o...
Can collective quantum effects make a difference in a meaningful thermodynamic operation? Focusing o...
We studied the dynamics of entropic uncertainty in Markovian and non-Markovian systems during the ch...
Recently, it has been shown that energy can be deposited on a collection of quantum systems at a rat...
Quantum battery (QB) is the energy storage and extraction device that is governed by the principles ...
Quantum work capacitances and maximal asymptotic work/energy ratios are figures of merit characteriz...
We demonstrate an asymmetry between the beneficial effects one can obtain using non-local operations...