Cyclic solid-state quantum battery: Thermodynamic characterization and quantum hardware simulation
arXiv:2407.07157 · doi:10.1088/2058-9565/ad9ed4
Abstract
We introduce a cyclic quantum battery model, based on an interacting bipartite system, weakly coupled to a thermal bath. The working cycle of the battery consists of four strokes: system thermalization, disconnection of subsystems, ergotropy extraction, and reconnection. The thermal bath acts as a charger in the thermalization stroke, while ergotropy extraction is possible because the ensuing thermal state is no longer passive after the disconnection stroke. Focusing on the case of two interacting qubits, we show that phase coherence, in the presence of non-trivial correlations between the qubits, can be exploited to reach working regimes with efficiency higher than 50% while providing finite ergotropy. Our protocol is illustrated through a simple and feasible circuit model of a cyclic superconducting quantum battery. Furthermore, we simulate the considered cycle on superconducting IBM quantum machines. The good agreement between the theoretical and simulated results strongly suggests that our scheme for cyclic quantum batteries can be successfully realized in superconducting quantum hardware.
This is the Accepted Manuscript version of an article accepted for publication in "Quantum Science and Technology". IOP Publishing Ltd is not responsible for any errors or omissions in this version of the manuscript or any version derived from it. This Accepted Manuscript is published under a CC BY licence. The Version of Record is available online at https://www.doi.org/10.1088/2058-9565/ad9ed4
References in corpus (76)
- Quantum Computing in the NISQ era and beyond
- Supplementary information for "Quantum supremacy using a programmable superconducting processor"
- Charge insensitive qubit design derived from the Cooper pair box
- Quantum Simulation
- Quantum computational advantage using photons
- Circuit Quantum Electrodynamics
- A Quantum Engineer's Guide to Superconducting Qubits
- Manipulating the Quantum State of an Electrical Circuit
- Superconducting Qubits: Current State of Play
- Trapped-Ion Quantum Computing: Progress and Challenges
- Logical quantum processor based on reconfigurable atom arrays
- Superconducting Circuits and Quantum Information
- Quantum information processing with superconducting circuits: a review
- Quantum oscillations in two coupled charge qubits
- Photonic quantum information processing: a concise review
- Extractable work from ensembles of quantum batteries. Entanglement helps
- Maximal work extraction from quantum systems
- Enhancing the charging power of quantum batteries
- High-power collective charging of a solid-state quantum battery
- Quantacell: Powerful charging of quantum batteries
- Security in Quantum Cryptography
- A Review on Quantum Approximate Optimization Algorithm and its Variants
- Entanglement Generation is Not Necessary for Optimal Work Extraction
- Spin-chain model of a many-body quantum battery
- Quantum advantage in the charging process of Sachdev-Ye-Kitaev batteries
- Superabsorption in an organic microcavity: towards a quantum battery
- Extractable Work from Correlations
- Colloquium: Quantum Batteries
- Nano Superconducting Quantum Interference device: a powerful tool for nanoscale investigations
- Charger-mediated energy transfer in exactly-solvable models for quantum batteries
- Quantum Coherence and Ergotropy
- Quantum Charging Advantage Cannot Be Extensive Without Global Operations
- Optimal charging of a superconducting quantum battery
- Quantum Heat Engines Using Superconducting Quantum Circuits
- Daemonic Ergotropy: Enhanced Work Extraction from Quantum Correlations
- NMR investigations of quantum battery using star-topology spin systems
- Entanglement, coherence and charging process of quantum batteries
- A Josephson phase battery
- Variational Thermal Quantum Simulation via Thermofield Double States
- Controllable coupling between flux qubits
- Quantum speed-up in collisional battery charging
- Ultra-stable charging of fast-scrambling SYK quantum batteries
- Charging a quantum battery with linear feedback control
- Cavity-Heisenberg spin chain quantum battery
- Beneficial and detrimental entanglement for quantum battery charging
- Quantum advantage in charging cavity and spin batteries by repeated interactions
- Floating tunable coupler for scalable quantum computing architectures
- Concepts of work in autonomous quantum heat engines
- Most energetic passive states
- Charging assisted by thermalization
- Variational preparation of finite-temperature states on a quantum computer
- Quantum batteries -- The future of energy storage?
- Optimal charging of open spin-chain quantum batteries via homodyne-based feedback control
- Charging a quantum battery in a non-Markovian environment: a collisional model approach
- Controlling energy storage crossing quantum phase transitions in an integrable spin quantum battery
- Artificial intelligence discovery of a charging protocol in a micromaser quantum battery
- Optimal operation of a three-level quantum heat engine and universal nature of efficiency
- Lossy Micromaser Battery: Almost Pure States in the Jaynes-Cummings Regime
- Enhancing coherent energy transfer between quantum devices via a mediator
- Bound on Ergotropic Gap for Bipartite Separable States
- Daemonic ergotropy in continuously-monitored open quantum batteries
- The presence of quantum correlations result in non-vanishing ergotropic gap
- Ergotropy from quantum and classical correlations
- Qutrit quantum battery: comparing different charging protocols
- Optimal local work extraction from bipartite quantum systems in the presence of Hamiltonian couplings
- Modular tunable coupler for superconducting qubits
- Signatures of Dissipation Driven Quantum Phase Transition in Rabi Model
- A Cooper-Pair Box Coupled to Two Resonators: An Architecture for a Quantum Refrigerator
- Quantum storage and information transfer with superconducting qubits
- Tunable coupler to fully decouple and maximally localize superconducting qubits
- Variational Gibbs State Preparation on NISQ devices
- Rapid state purification protocols for a Cooper pair box
- Extended local ergotropy
- Local ergotropy and its fluctuations across a dissipative quantum phase transition
- Daemonic quantum battery charged by thermalization
- SQUID-based interferometric accelerometer
Cited by in corpus (13)
- Roadmap on Quantum Thermodynamics
- Dynamical blockade of a reservoir for optimal performances of a quantum battery
- Experimental simulation of daemonic work extraction in open quantum batteries on a digital quantum computer
- Charging free fermion quantum batteries
- Reservoir-assisted quantum battery charging at finite temperatures
- Parallel ergotropy: Maximum work extraction via parallel local unitary operations
- Daemonic quantum battery charged by thermalization
- Ergotopy transport in a one dimensional spin chain
- Charging a Dimerized Quantum XY Chain
- Coherence-Driven Quantum Battery Charging via Autonomous Thermal Machines: Energy Transfer, Memory Effects, and Ergotropy Enhancement
- Optimal control of a dissipative micromaser quantum battery in the ultrastrong coupling regime
- Boosting Work Extraction in Quantum Batteries via Continuous Environment Monitoring
- Universal features of non-analytical energy storage in quantum critical quantum batteries