Optimal charging of a superconducting quantum battery
arXiv:2108.04298 · doi:10.1088/2058-9565/ac8444
Abstract
Quantum batteries are miniature energy storage devices and play a very important role in quantum thermodynamics. In recent years, quantum batteries have been extensively studied, but limited in theoretical level. Here we report the experimental realization of a quantum battery based on superconducting qubits. Our model explores dark and bright states to achieve stable and powerful charging processes, respectively. Our scheme makes use of the quantum adiabatic brachistochrone, which allows us to speed up the {battery ergotropy injection. Due to the inherent interaction of the system with its surrounding, the battery exhibits a self-discharge, which is shown to be described by a supercapacitor-like self-discharging mechanism. Our results paves the way for proposals of new superconducting circuits able to store extractable work for further usage.
5 pages and 3 figures + Supplemental material
References in corpus (11)
- Dissipative charging of a quantum battery
- Coherence and Decay of Higher Energy Levels of a Superconducting Transmon Qubit
- Quantum versus classical many-body batteries
- Quantum Adiabatic Brachistochrone
- Stabilizing Open Quantum Batteries by Sequential Measurements
- Quantum optical diode with semiconductor microcavities
- Quantum spin transistor with a Heisenberg spin chain
- Quantum advantage of two-level batteries in self-discharging process
- Quantum battery based on quantum discord at room temperature
- Energetic cost of Hamiltonian quantum gates
- Microscopic Dynamics of Nonlinear Fokker-Planck Equations
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- Extending the self-discharge time of Dicke quantum batteries using molecular triplets
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- Experimental Extraction of Coherent Ergotropy and Its Energetic Cost in a Superconducting Qubit
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- Modulator-Assisted Zeno Control of Energy Transfer in Quantum Batteries