We consider a central-spin battery where $N_b$ central spins serve as battery cells and $N_c$ bath spins serve as charging units. It is shown that the energy stored in the battery that can be extractable is quantified by the ergotropy, and that battery-charger entanglement is quantified via the Von Neumann entropy. By using an exact approach to a one-cell and two-cell battery, our analytical results suggest that, during the charging process, the extractable work slowly increases before the battery-charger entanglement reaches its maximum and then it will rapidly increase when the entanglement begins to decrease. In particular, we rigorously show that there is an inverse relationship between the extractable work and the entanglement at the e...
The possibility of using quantum effects to speed up the charging processes of batteries have been v...
We theoretically investigate the enhancement of the charging power in a Dicke quantum battery which ...
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...
When the size of a system is reduced to the scale of single particles, classical thermodynamics fail...
Theoretical explorations have revealed that quantum batteries can exploit quantum correlation to ach...
Can collective quantum effects make a difference in a meaningful thermodynamic operation? Focusing o...
Quantum thermodynamics takes over from classical thermodynamics when systems are of the scale of sin...
We study the connection between the charging power of quantum batteries and the fluctuations of the ...
We investigate a quantum battery made of N two-level systems, which is charged by an optical mode vi...
Quantum battery (QB) is the energy storage and extraction device that is governed by the principles ...
We demonstrate an asymmetry between the beneficial effects one can obtain using non-local operations...
Motivated by a recent disagreement about the claim that fluctuations in the free energy operator bou...
Recently, it has been shown that energy can be deposited on a collection of quantum systems at a rat...
The collective and quantum behavior of many-body systems may be harnessed to achieve fast charging o...
The possibility of using quantum effects to speed up the charging processes of batteries have been v...
We theoretically investigate the enhancement of the charging power in a Dicke quantum battery which ...
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...
When the size of a system is reduced to the scale of single particles, classical thermodynamics fail...
Theoretical explorations have revealed that quantum batteries can exploit quantum correlation to ach...
Can collective quantum effects make a difference in a meaningful thermodynamic operation? Focusing o...
Quantum thermodynamics takes over from classical thermodynamics when systems are of the scale of sin...
We study the connection between the charging power of quantum batteries and the fluctuations of the ...
We investigate a quantum battery made of N two-level systems, which is charged by an optical mode vi...
Quantum battery (QB) is the energy storage and extraction device that is governed by the principles ...
We demonstrate an asymmetry between the beneficial effects one can obtain using non-local operations...
Motivated by a recent disagreement about the claim that fluctuations in the free energy operator bou...
Recently, it has been shown that energy can be deposited on a collection of quantum systems at a rat...
The collective and quantum behavior of many-body systems may be harnessed to achieve fast charging o...
The possibility of using quantum effects to speed up the charging processes of batteries have been v...
We theoretically investigate the enhancement of the charging power in a Dicke quantum battery which ...
Quantum batteries, composed of quantum cells, are expected to outperform their classical analogs. Th...