Charge-Preserving Operations in Quantum Batteries
arXiv:2510.25549 · doi:10.1103/2jtp-jpkn
Abstract
Ergotropy provides a fundamental measure of the extractable work from a quantum system and, consequently, of the maximal useful energy, or charge, stored within it. Understanding how this quantity can be manipulated and transformed efficiently is crucial for advancing quantum energy management technologies. Here, we introduce and formalize the concepts of isoergotropic states and ergotropy-preserving operations, which reorganize the internal structure of ergotropy while keeping its total value unchanged. These ideas are illustrated for both discrete (two-level systems) and continuous-variable systems (single-mode Gaussian states). In each case, we show how ergotropy-preserving operations redistribute the respective coherent-incoherent and displacement-squeezing components. We further examine the thermodynamic exchanges accompanying ergotropy-preserving operations, including variations in energy and entropy, and demonstrate that these transformations can be dynamically implemented through standard beam-splitter-type interactions with an auxiliary system. Finally, we discuss the practical implications of isoergotropic states and operations in optimizing charging protocols and mitigating charge loss in open quantum batteries.
19 pages, 15 figures. Comments welcome
References in corpus (83)
- Quantum Coherence as a Resource
- Quantum Resource Theories
- A single-atom heat engine
- Extractable work from ensembles of quantum batteries. Entanglement helps
- Maximal work extraction from quantum systems
- Quantum Error Mitigation
- A Thermodynamical Approach to Quantifying Quantum Correlations
- Enhancing the charging power of quantum batteries
- High-power collective charging of a solid-state quantum battery
- Quantacell: Powerful charging of quantum batteries
- Experimental demonstration of quantum effects in the operation of microscopic heat engines
- Experimental characterization of a spin quantum heat engine
- 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
- Colloquium: Quantum Batteries
- Charger-mediated energy transfer in exactly-solvable models for quantum batteries
- Quantum Coherence and Ergotropy
- Measuring Gaussian quantum information and correlations using the Renyi entropy of order 2
- Quantum Charging Advantage Cannot Be Extensive Without Global Operations
- Stable adiabatic quantum batteries
- Using dark states to charge and stabilise open quantum batteries
- Optimal charging of a superconducting quantum battery
- Powerful harmonic charging in quantum batteries
- NMR investigations of quantum battery using star-topology spin systems
- Entanglement, coherence and charging process of quantum batteries
- Extended Dicke quantum battery with interatomic interactions and driving field
- The energetic cost of work extraction
- Non-Markovian effects on charging and self-discharging processes of quantum batteries
- Stabilizing Open Quantum Batteries by Sequential Measurements
- Nonreciprocal Quantum Batteries
- Dissipative dynamics of an open quantum battery
- Environment-mediated charging process of quantum batteries
- Charging a quantum battery with linear feedback control
- Quantum battery of interacting spins with environmental noise
- Gaussian quantum resource theories
- Cavity-Heisenberg spin chain quantum battery
- Floquet Engineering to Reactivate a Dissipative Quantum Battery
- Quantum advantage of two-level batteries in self-discharging process
- Ergotropy from coherences in an open quantum system
- Beneficial and detrimental entanglement for quantum battery charging
- Remote Charging and Degradation Suppression for the Quantum Battery
- Optimal Control Methods for Quantum Batteries
- Programmable interference between two microwave quantum memories
- Experimental analysis of energy transfers between a quantum emitter and light fields
- Superconducting transmon qubit-resonator quantum battery
- Topological Quantum Batteries
- Narrow Bounds for the Quantum Capacity of Thermal Attenuators
- Optimal Quantum Control of Charging Quantum Batteries
- Enhanced energy transfer in a Dicke quantum battery
- Boosting the performance of small autonomous refrigerators via common environmental effects
- Microscopic description for the emergence of collective dissipation in extended quantum systems
- Lossy Micromaser Battery: Almost Pure States in the Jaynes-Cummings Regime
- Demonstration of dynamical control of three-level open systems with a superconducting qutrit
- Self-Discharging Mitigated Quantum Battery
- Hyperbolic enhancement of a quantum battery
- Resonator-qutrits quantum battery
- Thermal devices powered by generalized measurements with indefinite causal order
- Extraction of ergotropy: free energy bound and application to open cycle engines
- Optimal local work extraction from bipartite quantum systems in the presence of Hamiltonian couplings
- Anomalous discharging of quantum batteries: the ergotropic Mpemba effect
- On the contribution of work or heat in exchanged energy via interaction in open bipartite quantum systems
- Steady-state charging of quantum batteries via dissipative ancillas
- Quantum Batteries: A Materials Science Perspective
- The tight Second Law inequality for coherent quantum systems and finite-size heat baths
- Efficient wireless charging of a quantum battery
- Extended local ergotropy
- Super-Optimal Charging of Quantum Batteries via Reservoir Engineering
- Stable collective charging of ultracold atoms quantum batteries
- Two-time weak measurement protocol for ergotropy protection in open quantum batteries
- Unveiling Detuning Effects for Heat-Current Control in Quantum Thermal Devices
- Local ergotropy and its fluctuations across a dissipative quantum phase transition
- Quantum outage probability for time-varying quantum channels
- Enhancing the charging performance of an atomic quantum battery
- Parallel ergotropy: Maximum work extraction via parallel local unitary operations
- Quantum switch instabilities with an open control
- Quantum battery supercharging via counter-diabatic dynamics
- A Schmidt decomposition approach to quantum thermodynamics
- Realism-based nonlocality: Invariance under local unitary operations and asymptotic decay for thermal correlated states
- Activation of thermal states by coherently controlled thermalization processes
- Magnetic Dipolar Quantum Battery with Spin-Orbit Coupling
- Work extraction from a quantum battery charged through an array of coupled cavities
- Tunable coherent microwave beam splitter and combiner at the single-photon level