Fluctuations in extractable work bound the charging power of quantum batteries
arXiv:1909.03558 · doi:10.1103/PhysRevLett.125.040601
Abstract
We study the connection between the charging power of quantum batteries and the fluctuations of the extractable work. We prove that in order to have a non-zero rate of change of the extractable work, the state of the battery cannot be an eigenstate of a `\emph{free energy operator}', defined by , where is the Hamiltonian of the battery and is the inverse temperature of a reference thermal bath with respect to which the extractable work is calculated. We do so by proving that fluctuations in the free energy operator upper bound the charging power of a quantum battery. Our findings also suggest that quantum coherence in the battery enhances the charging process, which we illustrate on a toy model of a heat engine. \ \emph{Note: this version includes our Reply to a Comment by Cusumano and Rudnicki, both published in Phys. Rev. Lett.}
Accepted version with updated presentation and references. main: 5 pages, 2 figures; PRL response: 1 page; appendix: 5 pages, 3 figures. Includes our Reply to a Comment by Cusumano and Rudnicki, both published in Phys. Rev. Lett
References in corpus (17)
- Fluctuation theorems: Work is not an observable
- Quantum speed limit for physical processes
- Quantum speed limits in open system dynamics
- Quantum coherence, time-translation symmetry and thermodynamics
- Quantum versus classical many-body batteries
- Performance bound for quantum absorption refrigerators
- Universal Work Fluctuations during Shortcuts To Adiabaticity by Counterdiabatic Driving
- Fluctuations in extractable work bound the charging power of quantum batteries
- Autonomous Quantum Refrigerator in a Circuit-QED Architecture Based on a Josephson Junction
- Quantum Performance of Thermal Machines over Many Cycles
- Coherence-enhanced efficiency of feedback-driven quantum engines
- Random Quantum Batteries
- Fundamental limits on quantum dynamics based on entropy change
- Reexamination of Pure Qubit Work Extraction
- Lazy states: sufficient and necessary condition for zero quantum entropy rates under any coupling to the environment
- Comment on "Fluctuations in Extractable Work Bound the Charging Power of Quantum Batteries"
- Fundamental bound on the power of quantum machines
Cited by in corpus (75)
- Quantum advantage in the charging process of Sachdev-Ye-Kitaev batteries
- Quantum Coherence and Ergotropy
- Quantum Charging Advantage Cannot Be Extensive Without Global Operations
- Ultrafast charging in a two-photon Dicke quantum battery
- Entanglement, Coherence, and Extractable Work in Quantum Batteries
- Extended Dicke quantum battery with interatomic interactions and driving field
- Fluctuations in extractable work bound the charging power of quantum batteries
- Non-Markovian effects on charging and self-discharging processes of quantum batteries
- Quantum speed-up in collisional battery charging
- Ultra-stable charging of fast-scrambling SYK quantum batteries
- Environment-mediated charging process of quantum batteries
- Quantum battery of interacting spins with environmental noise
- Charging a quantum battery with linear feedback control
- Cavity-Heisenberg spin chain quantum battery
- Floquet Engineering to Reactivate a Dissipative Quantum Battery
- Beneficial and detrimental entanglement for quantum battery charging
- Unifying Quantum and Classical Speed Limits on Observables
- Remote Charging and Degradation Suppression for the Quantum Battery
- Certifying quantum signatures in thermodynamics and metrology via contextuality of quantum linear response
- Micromasers as Quantum Batteries
- Bounds on charging power of open quantum batteries
- Quantum advantage in charging cavity and spin batteries by repeated interactions
- Topological Quantum Batteries
- Optimal charging of open spin-chain quantum batteries via homodyne-based feedback control
- Characterization of a Two-Photon Quantum Battery: Initial Conditions, Stability and Work Extraction
- Lower and upper bounds of quantum battery power in multiple central spin systems
- Environment-mediated entropic uncertainty in charging quantum batteries
- Energy storage and coherence in closed and open quantum batteries
- Reverse Quantum Speed Limit: How Slow Quantum Battery can Discharge?
- The Charging Performance of Su-Schrieffer-Heeger Quantum Battery
- Quantum Speed Limits for Observables
- Lossy Micromaser Battery: Almost Pure States in the Jaynes-Cummings Regime
- Self-Discharging Mitigated Quantum Battery
- Local passivity and entanglement in shared quantum batteries
- Resonator-qutrits quantum battery
- Analytically solvable many-body Rosen-Zener quantum battery
- Random Matrix Theory of the Isospectral twirling
- Charging by quantum measurement
- Dephasing Enabled Fast Charging of Quantum Batteries
- Engineering a heat engine purely driven by quantum coherence
- Structure of passive states and its implication in charging quantum batteries
- Quantum work extraction efficiency for noisy quantum batteries: the role of coherence
- Enhancing the performance of an open quantum battery by adjusting its velocity
- Scaling of energy and power in a large quantum battery-charger model
- Efficient wireless charging of a quantum battery
- Unitarity breaking in self-averaging spectral form factors
- Efficiency fluctuations in a quantum battery charged by a repeated interaction process
- Quantum memory enhanced dissipative entanglement creation in non-equilibrium steady states
- Stabilizer Entropy and entanglement complexity in the Sachdev-Ye-Kitaev model
- Trade-offs between precision and fluctuations in charging finite-dimensional quantum batteries
- Minimal time required to charge a quantum system
- Quantum speed limit of a noisy continuous-variable system
- Comment on "Fluctuations in Extractable Work Bound the Charging Power of Quantum Batteries"
- Quantum speed limits in arbitrary phase spaces
- Enhancing the charging performance of an atomic quantum battery
- Exergy of passive states: Waste energy after ergotropy extraction
- Correlation-Enabled Energy Exchange in Quantum Systems without External Driving
- Interplay of entanglement structures and stabilizer entropy in spin models
- Boosting quantum battery performance by structure engineering
- Stable and Efficient Charging of Superconducting Capacitively Shunted Flux Quantum Batteries
- Quench dynamics in the Jaynes-Cummings-Hubbard and Dicke models
- Quantum non-Markovianity, quantum coherence and extractable work in a general quantum process
- Incoherent Gaussian equivalence of mode Gaussian states
- Ergotropy in Quantum Batteries
- Charging a quantum spin network towards Heisenberg-limited precision
- Coherence dynamics induced by attenuation and amplification Gaussian channels
- Upper bounds on charging power and tangible advantage in quantum batteries
- Molecular Processes as Quantum Information Resources
- Optimal Work Extraction from Finite-Time Closed Quantum Dynamics
- Asymptotic freedom in the dephased charging of quantum batteries
- Highly efficient charging and discharging of three-level quantum batteries through shortcuts to adiabaticity
- Fluctuations in Extractable Work and Bounds on the Charging Power of Quantum Batteries
- Quantum coherence and entanglement in wireless quantum batteries
- Emergent mirror symmetry in the optimization of the central-spin quantum battery
- Quantum batteries in coherent Ising machine