Quantum batteries in coherent Ising machine
arXiv:2512.15072 · doi:10.1103/4bj4-4fpy
Abstract
With intensive studies of quantum thermodynamics, quantum batteries (QBs) have been proposed to store and transfer energy via quantum effects. Despite many theoretical models, decoherence remains a severe challenge and practical platforms are still rare. Here, we propose a QB based on the coherent Ising machine, in which the signal field acts as the core energy-storage unit. To clarify the role of quantum coherence in resisting dissipation, we decompose the ergotropy, i.e., the maximum extractable work from the QB, into its coherent and incoherent components. We find that the coherent part decays at a rate roughly half that of the incoherent part, exhibiting much stronger robustness against decoherence. More importantly, the coherent ergotropy and the average charging power reach their respective maxima at essentially the same moment, which defines the optimal instant to switch off the pump field. Finally, by coupling the QB to a two-level system as the load, we demonstrate an efficient energy discharge process of the proposed QB. Our work establishes a realistic and immediately-implementable QB architecture on a mature optical platform, laying a foundation for experimental exploration of quantum energy storage.
14 pages, 10 figures. Corresponding author: Qing Ai ([email protected])
References in corpus (57)
- Quantum metrology
- Extractable work from ensembles of quantum batteries. Entanglement helps
- Maximal work extraction from quantum systems
- Network of Time-Multiplexed Optical Parametric Oscillators as a Coherent Ising Machine
- Enhancing the charging power of quantum batteries
- High-power collective charging of a solid-state quantum battery
- Quantacell: Powerful charging of quantum batteries
- A Coherent Ising Machine Based On Degenerate Optical Parametric Oscillators
- Extractable work, the role of correlations, and asymptotic freedom in quantum batteries
- Large-scale photonic Ising machine by spatial light modulation
- Entanglement Generation is Not Necessary for Optimal Work Extraction
- New Limits on Coupling of Fundamental Constants to Gravity Using Sr Optical Lattice Clocks
- Experimental investigation of performance differences between Coherent Ising Machines and a quantum annealer
- Quantum advantage in the charging process of Sachdev-Ye-Kitaev batteries
- Charger-mediated energy transfer for quantum batteries: an open system approach
- Superabsorption in an organic microcavity: towards a quantum battery
- Dissipative charging of a quantum battery
- Large-scale Ising spin network based on degenerate optical parametric oscillators
- Extractable Work from Correlations
- Colloquium: Quantum Batteries
- Quantum Coherence and Ergotropy
- Quantum Charging Advantage Cannot Be Extensive Without Global Operations
- Quantum versus classical many-body batteries
- Ultrafast charging in a two-photon Dicke quantum battery
- Entanglement, coherence and charging process of quantum batteries
- Thermodynamics of quantum systems with multiple conserved quantities
- The energetic cost of work extraction
- Enhancement in performance of quantum battery by ordered and disordered interactions
- Fluctuations in extractable work bound the charging power of quantum batteries
- Quantum speed-up in collisional battery charging
- Nonreciprocal Quantum Batteries
- The battery capacity of energy-storing quantum systems
- All-Optical Quantum Random Bit Generation from Intrinsically Binary Phase of Parametric Oscillators
- Quantum advantage of two-level batteries in self-discharging process
- Ergotropy from coherences in an open quantum system
- Remote Charging and Degradation Suppression for the Quantum Battery
- Temporal Simultons in Optical Parametric Oscillators
- Quantum advantage in charging cavity and spin batteries by repeated interactions
- Topological Quantum Batteries
- Quantum heat machines equivalence and work extraction beyond Markovianity, and strong coupling via heat exchangers
- Frustrating quantum batteries
- Quantum correlation in degenerate optical parametric oscillators with mutual injections
- Generating EPR beams in a cavity optomechanical system
- Work extraction processes from noisy quantum batteries: the role of non local resources
- Can nonlinear parametric oscillators solve random Ising models?
- Reinforcement learning optimization of the charging of a Dicke quantum battery
- Self-Discharging Mitigated Quantum Battery
- High-capacity and high-power collective charging with spin chargers
- Gaussian Optical Ising Machines
- Optimal energy storage in the Tavis-Cummings quantum battery
- Vacuum enhanced charging of a quantum battery
- Generating and detecting entangled cat states in dissipatively coupled degenerate optical parametric oscillators
- Ergotropy and capacity optimization in Heisenberg spin-chain quantum batteries
- Quantum enhancement of a single quantum battery by repeated interactions with large spins
- Noncompletely Positive Quantum Maps Enable Efficient Local Energy Extraction in Batteries
- Frustration Elimination and Excited State Search in Coherent Ising Machines
- Coherent-cluster-state generation in networks of degenerate optical parametric oscillators