Quantum Engines and Refrigerators
arXiv:2302.00726 · doi:10.1016/j.physrep.2024.07.001
Abstract
Engines are systems and devices that convert one form of energy into another, typically into a more useful form that can perform work. In the classical setup, physical, chemical, and biological engines largely involve the conversion of heat into work. This energy conversion is at the core of thermodynamic laws and principles and is codified in textbook material. In the quantum regime, however, the principles of energy conversion become ambiguous, since quantum phenomena come into play. As with classical thermodynamics, fundamental principles can be explored through engines and refrigerators, but, in the quantum case, these devices are miniaturized and their operations involve uniquely quantum effects. Our work provides a broad overview of this active field of quantum engines and refrigerators, reviewing the latest theoretical proposals and experimental realizations. We cover myriad aspects of these devices, starting with the basic concepts of quantum analogs to the classical thermodynamic cycle and continuing with different quantum features of energy conversion that span many branches of quantum mechanics. These features include quantum fluctuations that become dominant in the microscale, non-thermal resources that fuel the engines, and the possibility of scaling up the working medium's size, to account for collective phenomena in many-body heat engines. Furthermore, we review studies of quantum engines operating in the strong system-bath coupling regime and those that include non-Markovian phenomena. Recent advances in thermoelectric devices and quantum information perspectives, including quantum measurement and feedback in quantum engines, are also presented.
References in corpus (132)
- The density-matrix renormalization group in the age of matrix product states
- Steering, Entanglement, Nonlocality, and the EPR Paradox
- Quantum Non-Markovianity: Characterization, Quantification and Detection
- Thermodynamic uncertainty relation for biomolecular processes
- Quantum Thermodynamic Cycles and quantum heat engines
- Molecular Transport Junctions: Vibrational Effects
- Fluctuation theorems: Work is not an observable
- Fluctuation-Dissipation: Response Theory in Statistical Physics
- The Physics of Maxwell's demon and information
- Perspective: Numerically "exact" approach to open quantum dynamics: The hierarchical equations of motion (HEOM)
- Second Law of Thermodynamics with Discrete Quantum Feedback Control
- The thermodynamic meaning of negative entropy
- Irreversible entropy production, from quantum to classical
- Experimental Test of Quantum Jarzynski Equality with a Trapped Ion System
- Thermoelectric energy harvesting with quantum dots
- Work and information processing in a solvable model of Maxwell's demon
- Experimental study of mutual information in a Maxwell Demon
- Optimal energy quanta to current conversion
- Exact mapping between system-reservoir quantum models and semi-infinite discrete chains using orthogonal polynomials
- Experimental Verification of an Indefinite Causal Order
- Negative Absolute Temperature for Motional Degrees of Freedom
- Markovian master equations for quantum thermal machines: local vs global approach
- Quantum collision models: open system dynamics from repeated interactions
- Thermodynamics of a physical model implementing a Maxwell demon
- Quantum Szilard Engine
- Non-perturbative treatment of non-Markovian dynamics of open quantum systems
- The Josephson heat interferometer
- Quantum thermodynamic devices: from theoretical proposals to experimental reality
- The role of quantum measurement in stochastic thermodynamics
- Thermodynamical Control by Frequent Quantum Measurements
- Nonequilibrium fluctuations in quantum heat engines: Theory, example, and possible solid state experiments
- Colloquium: Quantum heat transport in condensed matter systems
- Performance bound for quantum absorption refrigerators
- Quantum dot Rabi rotations beyond the weak exciton-phonon coupling regime
- Micrometre-scale refrigerators
- Quantum Thermodynamics: A Nonequilibrium Green's Functions Approach
- Performance of a quantum heat engine at strong reservoir coupling
- Powerful and efficient energy harvester with resonant-tunneling quantum dots
- Non-equilibrium quantum fluctuations of work
- Universal bound on the efficiency of molecular motors
- Minimal universal quantum heat machine
- Work extremum principle: Structure and function of quantum heat engines
- Large work extraction and the Landauer limit in a continuous Maxwell demon
- Hierarchical Quantum Master Equation Approach to Electronic-Vibrational Coupling in Nonequilibrium Transport through Nanosystems
- Autonomous Quantum Refrigerator in a Circuit-QED Architecture Based on a Josephson Junction
- Dynamical Control of Quantum Heat Engines Using Exceptional Points
- Identifying optimal cycles in quantum thermal machines with reinforcement-learning
- Operationally accessible bounds on fluctuations and entropy production in periodically driven systems
- Quantum Performance of Thermal Machines over Many Cycles
- Collision models can efficiently simulate any multipartite Markovian quantum dynamics
- Finite-Time Quantum Landauer Principle and Quantum Coherence
- Equilibration rates and negative absolute temperatures for ultracold atoms in optical lattices
- Focus on Shortcuts to Adiabaticity
- Ratcheting Heat Flux against a Thermal Bias
- Thermoelectric conversion at 30K in InAs/InP nanowire quantum dots
- Signatures of Liouvillian exceptional points in a quantum thermal machine
- Quantum thermal machines with single nonequilibrium environments
- Kirkwood-Dirac quasiprobability approach to the statistics of incompatible observables
- Spin Quantum Heat Engine Quantified by Quantum Steering
- Charge transfer statistics of a molecular quantum dot with strong electron-phonon interaction
- Strongly nonlinear thermovoltage and heat dissipation in interacting quantum dots
- Energy dynamics, heat production and heat-work conversion with qubits: towards the development of quantum machines
- Functional Integral approach to time-dependent heat exchange in open quantum systems: general method and applications
- Non-Markov Enhancement of Maximum Power for Quantum Thermal Machines
- An efficient method for quantum impurity problems out of equilibrium
- Probing Quantum Interference Effects in the Work Distribution
- An efficient non-linear Feshbach engine
- Enhanced performance of joint cooling and energy production
- The multilevel four-stroke swap engine and its environment
- Nanowires: A route to efficient thermoelectric devices
- Many-body quantum thermal machines
- Josephson Quantum Heat Engine
- Experimental verification of fluctuation relations with a quantum computer
- Non-equilibrium quantum impurity problems via matrix-product states in the temporal domain
- Bipolar Thermoelectric Josephson Engine
- Quantum-Enhanced Heat Engine Based on Superabsorption
- Quantum finite-time thermodynamics: insight from a single qubit engine
- Hybrid Thermal Machines: Generalized Thermodynamic Resources for Multitasking
- A photonic quantum engine driven by superradiance
- Three-qubit refrigerator with two-body interactions
- Quantum machines powered by correlated baths
- Optimal control of quantum thermal machines using machine learning
- The Ising critical quantum Otto engine
- Thermodynamic uncertainty relations for coherently driven open quantum systems
- Experimental Validation of Fully Quantum Fluctuation Theorems Using Dynamic Bayesian Networks
- Measurement-dependent corrections to work distributions arising from quantum coherences
- Collective effects on the performance and stability of quantum heat engines
- Heat rectification through single and coupled quantum dots
- The role of quantum coherence in energy fluctuations
- Effect of nonadiabatic electronic-vibrational interactions on the transport properties of single-molecule junctions
- Efficiently Fuelling a Quantum Engine with Incompatible Measurements
- Geometric optimization of non-equilibrium adiabatic thermal machines and implementation in a qubit system
- Autonomous dissipative Maxwell's demon in a diamond spin qutrit
- Bounds on fluctuations for finite-time quantum Otto cycle
- Non-Markovian thermal operations boosting the performance of quantum heat engines
- Pareto-optimal cycles for power, efficiency and fluctuations of quantum heat engines using reinforcement learning
- Engineering dynamical couplings for quantum thermodynamic tasks
- Projective measurements can probe non-classical work extraction and time-correlations
- Partition-free approach to open quantum systems in harmonic environments: an exact stochastic Liouville equation
- Thermopower and thermal conductance of a superconducting quantum point contact
- Nonlocal quantum heat engines made of hybrid superconducting devices
- Experimental test of fluctuation relations for driven open quantum systems with an NV center
- Stochastic thermodynamics of self-oscillations: the electron shuttle
- Nonequilibrium open quantum systems with multiple bosonic and fermionic environments: A hierarchical equations of motion approach
- Autonomous quantum absorption refrigerators
- Quantum and classical dynamics of a three-mode absorption refrigerator
- Work Generation from Thermal Noise by Quantum Phase-Sensitive Observation
- Maximum power heat engines and refrigerators in the fast-driving regime
- Dynamical heat engines with non--Markovian reservoirs
- Superradiant many-qubit absorption refrigerator
- Continuous thermomajorization and a complete set of laws for Markovian thermal processes
- Minimal two-body quantum absorption refrigerator
- Hybrid quantum thermal machines with dynamical couplings
- Unconventional four-terminal thermoelectric transport due to inelastic transport: cooling by transverse current, transverse thermoelectric effect and Maxwell demon
- Multitask quantum thermal machines and cooperative effects
- Operational nonclassicality in minimal autonomous thermal machines
- Stochastic Thermodynamic Cycles of a Mesoscopic Thermoelectric Engine
- From non-equilibrium Green's functions to quantum master equations for the density matrix and out-of-time-order correlators: steady state and adiabatic dynamics
- Switching the function of the quantum Otto cycle in non-Markovian dynamics: heat engine, heater and heat pump
- Thermodynamics of the polaron master equation at finite bias
- Response theory for nonequilibrium steady-states of open quantum systems
- Superconducting quantum refrigerator: Breaking and rejoining Cooper pairs with magnetic field cycles
- Quantum refrigerators in finite-time cycle duration
- Minimal quantum thermal machine in a bandgap environment: non-Markovian features and anti-Zeno advantage
- Entropy and information flow in quantum systems strongly coupled to baths
- Power Fluctuations of An Irreversible Quantum Otto Engine
- Local and non-local two-electron tunneling processes in a Cooper pair splitter
- Thermodynamics in topological Josephson junctions
- A short story of quantum and information thermodynamics
- Work extraction from single-mode thermal noise by measurements: How important is information?
- Nonequilibrium fluctuations of a quantum heat engine
- Illusory cracks in the second law of thermodynamics in quantum nanoelectronics
Cited by in corpus (43)
- Roadmap on Quantum Thermodynamics
- Dissipation-induced collective advantage of a quantum thermal machine
- Correlated quantum machines beyond the standard second law
- Asymmetries of thermal processes in open quantum systems
- Quantum speed limit for Kirkwood-Dirac quasiprobabilities
- Extracting work from coherence in a two-mode Bose-Einstein condensate
- Thermoelectric processes of quantum normal-superconductor interfaces
- Role of electron-electron interaction in the Mpemba effect in quantum dots
- Time-resolved Stochastic Dynamics of Quantum Thermal Machines
- Catalytic enhancement in the performance of the microscopic two-stroke heat engine
- Coherent heat transfer leads to genuine quantum enhancement in the performances of continuous engines
- Quantum thermodynamic advantage in work extraction from steerable quantum correlations
- Information geometry of transitions between quantum nonequilibrium steady states
- Quantum thermocouples: nonlocal conversion and control of heat in nanostructures
- Heat-to-motion conversion for quantum active matter
- Artificially intelligent Maxwell's demon for optimal control of open quantum systems
- Stochastically bundled dissipators for the quantum master equation
- Leveraging collective effects for thermometry in waveguide quantum electrodynamics
- Quasiprobability distributions with weak measurements
- Optimal performance of a three stroke heat engine in the microscopic regime
- Multiparticle Quantum Heat Engine: Exploring the Impact of Criticality on Efficiency
- Making the Virtual Real: Measurement-Powered Tunneling Engines
- Quantum transport phenomena induced by time-dependent fields
- Fast, Accurate, and Local Temperature Control Using Qubits
- A Finite-Time Quantum Otto Engine subject to Control Noise and Enhancement Techniques
- Finite-time performance of a cyclic 2d quantum Ising heat engine
- Numerical implementation of the partial secular approximation and unified master equation in structured open quantum systems
- Quantum thermal machine regimes in the transverse-field Ising model
- Optimal constrained control for generally damped Brownian heat engines
- Enhancing the Charging Performance of Many-Body Quantum Batteries through Landau-Zener Driving
- Molecular Processes as Quantum Information Resources
- Current precision in interacting hybrid Normal-Superconducting systems
- Inertia Tames Fluctuations in Autonomous Stationary Heat Engines
- Framework for fluctuating times and counting observables in stochastic excursions
- Enhancing the Performances of Autonomous Quantum Refrigerators via Two-Photon Transitions
- Thermodynamic and energetic constraints on transition probabilities of small-scale quantum systems
- Quantum Measurement Induced Radiative Processes in Continuously Monitored Optical Environments
- Floquet-engineered system-reservoir interaction in the transverse field Ising model
- Thermodynamic speed limit for non-adiabatic work and its classical-quantum decomposition
- Heat, work, and fluctuations in a driven quantum resonator
- Coupling-energy driven pumping through quantum dots: Role of coherences
- Heat flow through the quantum heat valve coupled to ohmic baths via a master equation approach
- Finite-time thermal refrigerator in interacting Bose-Einstein Condensates