Nonreciprocal Quantum Batteries
arXiv:2401.05090 · doi:10.1103/PhysRevLett.132.210402
Abstract
Nonreciprocity, arising from the breaking of time-reversal symmetry, has become a fundamental tool in diverse quantum technology applications. It enables directional flow of signals and efficient noise suppression, constituting a key element in the architecture of current quantum information and computing systems. Here we explore its potential in optimizing the charging dynamics of a quantum battery. By introducing nonreciprocity through reservoir engineering during the charging process, we induce a directed energy flow from the quantum charger to the battery, resulting in a substantial increase in energy accumulation. Despite local dissipation, the nonreciprocal approach demonstrates a fourfold increase in battery energy compared to conventional charger-battery systems. We demonstrate that employing a shared reservoir can establish an optimal condition where nonreciprocity enhances charging efficiency and elevates energy storage in the battery. This effect is observed in the stationary limit and remains applicable even in overdamped coupling regimes, eliminating the need for precise temporal control over evolution parameters. Our result can be extended to a chiral network of quantum nodes, serving as a multi-cell quantum battery system to enhance storage capacity. The proposed approach is straightforward to implement using current state-of-the-art quantum circuits, both in photonics and superconducting quantum systems. In a broader context, the concept of nonreciprocal charging has significant implications for sensing, energy capture, and storage technologies or studying quantum thermodynamics.
10 pages, 6 figures
References in corpus (17)
- Chiral Quantum Optics
- Nonreciprocal Photon Transmission and Amplification via Reservoir Engineering
- Nonreciprocity and magnetic-free isolation based on optomechanical interactions
- Dissipative charging of a quantum battery
- Noiseless nonreciprocity in a parametric active device
- Mechanical On-Chip Microwave Circulator
- Quantum versus classical many-body batteries
- Nonreciprocal microwave signal processing with a Field-Programmable Josephson Amplifier
- Widely tunable on-chip microwave circulator for superconducting quantum circuits
- The battery capacity of energy-storing quantum systems
- Beneficial and detrimental entanglement for quantum battery charging
- Optimal Control Methods for Quantum Batteries
- Quantum advantage in charging cavity and spin batteries by repeated interactions
- Quantum batteries -- The future of energy storage?
- Catalysis in Charging Quantum Batteries
- Optimal Quantum Control of Charging Quantum Batteries
- Quantum nonreciprocal interactions via dissipative gauge symmetry
Cited by in corpus (49)
- Topological Quantum Batteries
- Self-Discharging Mitigated Quantum Battery
- Dephasing Enabled Fast Charging of Quantum Batteries
- Performance of a Superconducting Quantum Battery
- Ergotropy and capacity optimization in Heisenberg spin-chain quantum batteries
- Dynamical blockade of a reservoir for optimal performances of a quantum battery
- Quantum Batteries: A Materials Science Perspective
- Super-Optimal Charging of Quantum Batteries via Reservoir Engineering
- Experimental simulation of daemonic work extraction in open quantum batteries on a digital quantum computer
- Two-time weak measurement protocol for ergotropy protection in open quantum batteries
- Charging free fermion quantum batteries
- Stable collective charging of ultracold atoms quantum batteries
- Gain-Loss Coupled Systems
- Reservoir-assisted quantum battery charging at finite temperatures
- A Single-Ion Information Engine for Charging Quantum Battery
- Unveiling Detuning Effects for Heat-Current Control in Quantum Thermal Devices
- Two-photon charging of a quantum battery with a Gaussian pulse envelope
- Observation of multiple time crystals in a driven-dissipative system with Rydberg gas
- Quantum battery supercharging via counter-diabatic dynamics
- Wireless energy transfer in non-Hermitian quantum battery
- Cavity-Heisenberg spin- chain quantum battery and reinforcement learning optimization
- Energy storage in a continuous-variable quantum battery with nonlinear coupling
- Nonreciprocal Quantum Sensing
- Quantum recharging by shortcut to adiabaticity
- Ergotropy in Quantum Batteries
- Magnetic Dipolar Quantum Battery with Spin-Orbit Coupling
- Harnessing Nth Root Gates for Energy Storage
- Quantum steering as a probe of energy transfer in quantum batteries
- Recent advances in the combination of nonlinearity and exceptional points
- Nonreciprocity of intense light field and weak quantum signal in optomechanical systems with three-mode parametric interactions
- Thermodynamics of coupled time crystals with an application to energy storage
- Upper bounds on charging power and tangible advantage in quantum batteries
- Dissipative qutrit-mediated stable charging
- Enhancing the Charging Performance of Many-Body Quantum Batteries through Landau-Zener Driving
- Charge-Preserving Operations in Quantum Batteries
- Breakdown of Non-Bloch Bulk-Boundary Correspondence and Emergent Topology in Floquet Non-Hermitian Systems
- Enhancing Nonreciprocity through Squeezing-Induced Symmetry Breaking
- Loss-induced nonreciprocal quantum battery
- Loss-induced quantum nonreciprocity and entanglement in superconducting qubits
- The advantages of extended nonreciprocal quantum batteries
- Quantum coherence and entanglement in wireless quantum batteries
- Boosting Work Extraction in Quantum Batteries via Continuous Environment Monitoring
- Nonreciprocal flow of fluctuations, populations and correlations between doubly coupled bosonic modes
- Asymptotic freedom in the dephased charging of quantum batteries
- Collective Quantum Batteries and Charger-Battery Setup in Open Quantum Systems: Impact of Inter-Qubit Interactions, Dissipation, and Quantum Criticality
- Quantum batteries in coherent Ising machine
- pyBoLaNO: A Python symbolic package for normal ordering involving bosonic ladder operators
- Connection-topology--dependent energy transport and ergotropy in quantum battery networks with reciprocal and nonreciprocal couplings
- Nonreciprocal photon bundle emission