A single-atom heat engine
arXiv:1510.03681 · doi:10.1126/science.aad6320
Abstract
We report the experimental realization of a single-atom heat engine. An ion is confined in a linear Paul trap with tapered geometry and driven thermally by coupling it alternately to hot and cold reservoirs. The output power of the engine is used to drive a harmonic oscillation. From direct measurements of the ion dynamics, we determine the thermodynamic cycles for various temperature differences of the reservoirs. We use these cycles to evaluate power and efficiency of the engine, obtaining up to yJ and , consistent with analytical estimations. Our results demonstrate that thermal machines can be reduced to the ultimate limit of single atoms.
References in corpus (4)
Cited by in corpus (472)
- Programmable Quantum Simulations of Spin Systems with Trapped Ions
- Transforming heat transfer with thermal metamaterials and devices
- Fundamental aspects of steady-state conversion of heat to work at the nanoscale
- Experimental demonstration of quantum effects in the operation of microscopic heat engines
- Experimental characterization of a spin quantum heat engine
- The quantum harmonic Otto cycle
- Universal trade-off relation between power and efficiency for heat engines
- Quantum and Information Thermodynamics: A Unifying Framework based on Repeated Interactions
- Observing a quantum Maxwell demon at work
- Quantum absorption refrigerator with trapped ions
- Quantum engine efficiency bound beyond the second law of thermodynamics
- Trade-off between speed and cost in shortcuts to adiabaticity
- Tunable photonic heat transport in a quantum heat valve
- A spin heat engine coupled to a harmonic-oscillator flywheel
- Quantum thermodynamic devices: from theoretical proposals to experimental reality
- Extracting work from quantum measurement in Maxwell demon engines
- Thermodynamic uncertainty relations from exchange fluctuation theorems
- Quantum technologies need a Quantum Energy Initiative
- Entropy production and thermodynamic power of the squeezed thermal reservoir
- Squeezed thermal reservoirs as a resource for a nano-mechanical engine beyond the Carnot limit
- Optimal charging of a superconducting quantum battery
- Quantum thermal machines and batteries
- Thermometry in the quantum regime: Recent theoretical progress
- Quantum Supremacy of Many-Particle Thermal Machines
- Performance of a quantum heat engine at strong reservoir coupling
- An endoreversible quantum heat engine driven by atomic collisions
- Coherence effects in the performance of the quantum Otto heat engine
- Two-terminal transport measurements with cold atoms
- Efficiency of a quantum Otto heat engine operating under a reservoir at effective negative temperatures
- Otto refrigerator based on a superconducting qubit: classical and quantum performance
- The role of coherence in the non-equilibrium thermodynamics of quantum systems
- Scaling-up quantum heat engines efficiently via shortcuts to adiabaticity
- Precision and Work Fluctuations in Gaussian Battery Charging
- Autonomous Quantum Refrigerator in a Circuit-QED Architecture Based on a Josephson Junction
- Strong Coupling Thermodynamics of Open Quantum Systems
- Thermodynamic Geometry of Microscopic Heat Engines
- Universal Coherence-Induced Power Losses of Quantum Heat Engines in Linear Response
- Quantum Synchronization Blockade: Energy Quantization hinders Synchronization of Identical Oscillators
- One decade of quantum optimal control in the chopped random basis
- Dynamical Control of Quantum Heat Engines Using Exceptional Points
- Thermodynamic uncertainty relation in slowly driven quantum heat engines
- Identifying optimal cycles in quantum thermal machines with reinforcement-learning
- Periodic Thermodynamics of Open Quantum Systems
- Operationally accessible bounds on fluctuations and entropy production in periodically driven systems
- Efficiency of harmonic quantum Otto engines at maximal power
- Analog of a quantum heat engine using a single-spin qubit
- Quantum Performance of Thermal Machines over Many Cycles
- Superadiabatic quantum friction suppression in finite-time thermodynamics
- Time Dependent Markovian Quantum Master Equation
- Quantum correlations and thermodynamic performances of two-qubit engines with local and collective baths
- Performance of superadiabatic quantum machines
- Spin quantum heat engines with shortcuts to adiabaticity
- Cooperative many-body enhancement of quantum thermal machine power
- Nonadiabatic single-qubit quantum Otto engine
- Autonomous Rotor Heat Engine
- Quantum Signatures in the Quantum Carnot Cycle
- Single atom energy-conversion device with a quantum load
- Thermoelectric conversion at 30K in InAs/InP nanowire quantum dots
- Universal constraint for efficiency and power of a low-dissipation heat engine
- Active Brownian Heat Engines
- An Interaction-Driven Many-Particle Quantum Heat Engine: Universal Behavior
- Realising a quantum absorption refrigerator with an atom-cavity system
- Shortcut-to-adiabaticity Otto engine: A twist to finite-time thermodynamics
- Tensor-network method to simulate strongly interacting quantum thermal machines
- Geometric properties of adiabatic quantum thermal machines
- Concepts of work in autonomous quantum heat engines
- Work Extraction and Energy Storage in the Dicke Model
- Quantum heat machines equivalence and work extraction beyond Markovianity, and strong coupling via heat exchangers
- Bosons Outperform Fermions -- The Thermodynamic Advantage of Symmetry
- Quantum Statistical Enhancement of the Collective Performance of Multiple Bosonic Engines
- An operational approach to quantum stochastic thermodynamics
- Enhancement of quantum heat engine by encircling a Liouvillian exceptional point
- An out-of-equilibrium non-Markovian Quantum Heat Engine
- Out-of-equilibrium operation of a quantum heat engine: The cost of thermal coupling control
- Quantum thermal transistor based on the qubit-qutrit coupling
- Energy dynamics, heat production and heat-work conversion with qubits: towards the development of quantum machines
- Thermally driven quantum refrigerator autonomously resets superconducting qubit
- An efficient non-linear Feshbach engine
- A quantum heat engine with coupled superconducting resonators
- Non-Markov Enhancement of Maximum Power for Quantum Thermal Machines
- Quantum thermodynamically consistent local master equations
- Maximum power and corresponding efficiency for two-level heat engines and refrigerators: optimality of fast cycles
- Single-atom heat machines enabled by energy quantization
- Quantum heat statistics with time-evolving matrix product operators
- Many-body quantum heat engines with shortcuts to adiabaticity
- A universal approach to quantum thermodynamics in the strong coupling regime
- Coherence and decoherence in quantum absorption refrigerators
- Universal finite-time thermodynamics of many-body quantum machines from Kibble-Zurek scaling
- Equidistant quenches in few-level quantum systems
- Quantum Flywheel
- Violation of TUR in a periodically driven work-to-work converter from weak to strong dissipation
- Many-body quantum thermal machines
- Collective performance of a finite-time quantum Otto cycle
- Experimental validation of the -scaling entropy generation in finite-time thermodynamics with dry air
- Refrigeration beyond weak internal coupling
- Collectively enhanced thermalization via multiqubit collisions
- Optimal Quantum Control of Charging Quantum Batteries
- Thermodynamics of precision in quantum nano-machines
- Experimental verification of a Jarzynski-related information-theoretic equality using a single trapped ion
- Nonequilibrium many-body quantum engine driven by time-translation symmetry breaking
- Quantum Optical Two-Atom Thermal Diode
- A non-equilibrium quantum many-body Rydberg atom engine
- Swift heat transfer by fast-forward driving in open quantum systems
- Measuring the thermodynamic cost of timekeeping
- A stochastic heat engine using an active particle
- Coherences and the thermodynamic uncertainty relation: Insights from quantum absorption refrigerators
- Quantum algorithms for transport coefficients in gauge theories
- Quantum finite-time thermodynamics: insight from a single qubit engine
- Shortcut-to-adiabaticity quantum Otto refrigerator
- From quantum heat engines to laser cooling: Floquet theory beyond the Born-Markov approximation
- Entropy-Based Formulation of Thermodynamics in Arbitrary Quantum Evolution
- Employing Non-Markovian effects to improve the performance of a quantum Otto refrigerator
- Speed-ups to isothermality: Enhanced quantum thermal machines through control of the system-bath coupling
- Work and power fluctuations in a critical heat engine
- Boosting the performance of small autonomous refrigerators via common environmental effects
- Optimizing autonomous thermal machines powered by energetic coherence
- Two-level masers as heat-to-work converters
- Thermodynamics in Single-Electron Circuits and Superconducting Qubits
- Inducing micromechanical motion by optical excitation of a single quantum dot
- A quantum enhanced finite-time Otto cycle
- A many-body heat engine at criticality
- Quantum field thermal machines
- Quantum machines powered by correlated baths
- Multifunctional quantum thermal device utilizing three qubits
- Occurrence of discontinuities in the performance of finite-time quantum Otto cycles
- Finite-time quantum Stirling heat engine
- Temperature control in dissipative cavities by entangled dimers
- Optimal control of quantum thermal machines using machine learning
- The Ising critical quantum Otto engine
- Experimental investigation of a quantum heat engine powered by generalized measurements
- Geometry of work fluctuations versus efficiency in microscopic thermal machines
- Quantum thermodynamics of the resonant-level model with driven system-bath coupling
- Current fluctuations in quantum absorption refrigerators
- Efficiency versus Speed in Quantum Heat Engines: Rigorous Constraint from Lieb-Robinson Bound
- Measurement-based quantum heat engine in a multilevel system
- Thermal bath Engineering for Swift Equilibration
- Self-Discharging Mitigated Quantum Battery
- Collective effects on the performance and stability of quantum heat engines
- Monitoring quantum Otto engines
- Charging a quantum battery via non equilibrium heat current
- Direct Measurements of Collisional Dynamics in Cold Atom Triads
- Floquet Quantum Thermal Transistor
- Quantum heat engine with long-range advantages
- Anti-Zeno quantum advantage in fast-driven heat machines
- Achieve Higher Efficiency at Maximum Power with Finite-time Quantum Otto Cycle
- Extracting maximum power from active colloidal heat engines
- Quantum limit to nonequilibrium heat-engine performance imposed by strong system-reservoir coupling
- Entangled quantum Otto heat engines based on two-spin systems with the Dzyaloshinski-Moriya interaction
- Local master equations bypass the secular approximation
- Geometric optimization of non-equilibrium adiabatic thermal machines and implementation in a qubit system
- Beating the limits with initial correlations
- Two Coupled Double Quantum Dots Systems as an working substance for Heat Machines
- Suppressing coherence effects in quantum-measurement based engines
- Engineered Swift Equilibration for Brownian objects: from underdamped to overdamped dynamics
- Non-Markovian thermal operations boosting the performance of quantum heat engines
- Vacuum enhanced charging of a quantum battery
- Quantum and classical Otto engine for a 2-D material: the case of a graphene quantum dot
- Non-thermal quantum engine in transmon qubits
- Global passivity in microscopic thermodynamics
- Second law for active heat engines
- Non-Hermitian Pseudomodes for Strongly Coupled Open Quantum Systems: Unravelings, Correlations and Thermodynamics
- Finite-time performance of a single-ion quantum Otto engine
- Thermal devices powered by generalized measurements with indefinite causal order
- Ultra-cold Single-Atom Quantum Heat Engines
- Fast Route to Thermalization
- A quantum Otto engine with finite heat baths: energy, correlations, and degradation
- Non-Markovian effect on quantum Otto engine: -Role of system--reservoir interaction-
- Roadmap on Quantum Thermodynamics
- Single-ion quantum Otto engine with always-on bath interaction
- Finite-time quantum Otto engine: Surpassing the quasi-static efficiency due to friction
- Unifying paradigms of quantum refrigeration: fundamental limits of cooling and associated work costs
- Phase-coherent solitonic Josephson heat oscillator
- Quantum Non-demolition Measurement of a Many-Body Hamiltonian
- A Cooper-Pair Box Coupled to Two Resonators: An Architecture for a Quantum Refrigerator
- Two-body quantum absorption refrigerators with optomechanical-like interactions
- Nonequilibrium control of thermal and mechanical changes in a levitated system
- Interaction enhanced quantum heat engine
- Quantum Heat Engines with Carnot Efficiency at Maximum Power
- Blue-sky bifurcation of ion energies and the limits of neutral-gas sympathetic cooling of trapped ions
- Quantum shape effects and novel thermodynamic behaviors at nanoscale
- Approaching Carnot efficiency at maximum power in linear response regime
- Tuning the performance of a micrometer-sized Stirling engine through reservoir engineering
- Experimental apparatus for overlapping a ground-state cooled ion with ultracold atoms
- Coherent Josephson thermodynamic cycles
- Maximum power heat engines and refrigerators in the fast-driving regime
- A self-contained quantum harmonic engine
- Autonomous implementation of thermodynamic cycles at the nanoscale
- Are quantum thermodynamic machines better than their classical counterparts?
- Relativistic quantum heat engine from uncertainty relation standpoint
- Quantum Thermal Machines Fuelled by Vacuum Forces
- Continuous Measurement Boosted Adiabatic Quantum Thermal Machines
- Effect of finite-size heat source's heat capacity on the efficiency of heat engine
- Surpassing the Carnot Efficiency by extracting imperfect work
- Optical simulation of a quantum thermal machine
- Minimal two-body quantum absorption refrigerator
- Heat Bath Algorithmic Cooled Quantum Otto Engines
- Doppler cooling thermometry of a multi-level ion in the presence of micromotion
- Quantum Energy Lines and the optimal output ergotropy problem
- Dynamical Coulomb blockade of thermal transport
- Thermal transistor effect in quantum systems
- Maximum Power Output of Quantum Heat Engine with Energy Bath
- Work-distribution quantumness and irreversibility when crossing a quantum phase transition in finite time
- Universal approach to quantum thermodynamics of strongly coupled systems under nonequilibrium conditions and external driving
- Quadratic Enhancement in the Reliability of Collective Quantum Engines
- Quantum jump model for a system with a finite-size environment
- Speed and Efficiency Limits of Multilevel Incoherent Heat Engines
- Quantum magnetometry using two-stroke thermal machines
- Quantum Thermodynamics for Driven Dissipative Bosonic Systems
- Quantized refrigerator for an atomic cloud
- Topological Phase Transition in Quantum Heat Engine Cycles
- Thermodynamics at the microscale: from effective heating to the Brownian Carnot engine
- Quantum optomechanical straight-twin engine
- DFT-inspired methods for quantum thermodynamics
- Thermodynamics of one and two-qubit nonequilibrium heat engines running between squeezed thermal reservoirs
- A Feshbach engine in the Thomas-Fermi regime
- Operational nonclassicality in minimal autonomous thermal machines
- Autonomous quantum rotator
- Optimisation of an active heat engine
- Correlated vs. uncorrelated noise acting on a quantum refrigerator
- Quantum coherence enables hybrid multitask and multisource regimes in autonomous thermal machines
- Thermodynamic description of non-Markovian information flux of nonequilibrium open quantum systems
- A Brownian cyclic engine operating in a viscoelastic active suspension
- Unification of the first law of quantum thermodynamics
- Quantum Thermodynamics and Quantum Coherence Engines
- A cascade electronic refrigerator using superconducting tunnel junctions
- Performance boost of a collective qutrit refrigerator
- Switching the function of the quantum Otto cycle in non-Markovian dynamics: heat engine, heater and heat pump
- Common environmental effects on quantum thermal transistor
- Quantumness and thermodynamic uncertainty relation of finite-time Otto cycle
- Extrapolating the thermodynamic length with finite-time measurements
- Cooperative efficiency boost for quantum heat engines
- Reconstructing quantum entropy production to probe irreversibility and correlations
- Enhancing the performance of coupled quantum Otto thermal machines without entanglement and quantum correlations
- Thermodynamic engine with a quantum degenerate working fluid
- Parameter estimation in atomic spectroscopy using exceptional points
- Optimal protocols and universal time-energy bound in Brownian thermodynamics
- Quantum Otto cycle under strong coupling
- Measurement-based quantum thermal machines with feedback control
- Driven quantum harmonic oscillators: A working medium for thermal machines
- Nonequilibrium heat transport and work with a single artificial atom coupled to a waveguide: emission without external driving
- Quantum jump approach to microscopic heat engines
- A Quantum Heat Machine from Fast Optomechanics
- A thermodynamic approach to measuring entropy in a few-electron nanodevice
- Dynamically Emergent Quantum Thermodynamics: Non-Markovian Otto Cycle
- Exploring quantum thermodynamics with NMR
- Quantum heat engine with a quadratically coupled optomechanical system
- A finite-time quantum Otto engine with tunnel coupled one-dimensional Bose gases
- Vanishing efficiency of speeded-up quantum Otto engines
- Quantum thermodynamics in adiabatic open systems and its trapped-ion experimental realization
- Exploring non-equilibrium phases of the generalized Dicke model with a trapped Rydberg ion quantum simulator
- Multi-spin counter-diabatic driving in many-body quantum Otto refrigerators
- Landauer Principle and Thermodynamics of Computation
- Entropy production and fluctuations in a Maxwell's refrigerator with squeezing
- Efficiency of isothermal active matter engines: Strong driving beats weak driving
- Probing coherent quantum thermodynamics using a trapped ion
- Electron cooling with graphene-insulator-superconductor tunnel junctions and applications to fast bolometry
- Dynamical invariant based shortcut to equilibration in open quantum systems
- Inertial Theorem: Overcoming the quantum adiabatic limit
- Driven Brownian particle as a paradigm for a nonequilibrium heat bath: Effective temperature and cyclic work extraction
- Minimal quantum thermal machine in a bandgap environment: non-Markovian features and anti-Zeno advantage
- Quantum heat engine based on a spin-orbit and Zeeman-coupled Bose-Einstein condensate
- Quantum Thermometry with Trapped Ions
- Performance of the collective three-level quantum thermal engine
- Efficiency large deviation function of quantum heat engines
- Correlation-boosted quantum engine: A proof-of-principle demonstration
- Nonlinear, Nonequilibrium and Collective Dynamics in a Periodically Modulated Cold Atom System
- Effective temperature pulses in open quantum systems
- Quantum corrections of work statistics in closed quantum systems
- Hybrid normal-superconducting Aharonov-Bohm quantum thermal device
- Reliable quantum advantage in quantum battery charging
- Quantum engines with interacting Bose-Einstein condensates
- Stable collective charging of ultracold atoms quantum batteries
- Nonequilibrium thermodynamics and power generation in open quantum optomechanical systems
- Performance of quantum heat engines under the influence of long-range interactions
- Quantum features and signatures of quantum-thermal machines
- Friction-free quantum machines
- Non-commutative space engine: a boost to thermodynamic processes
- Autonomous Quantum Devices: When Are They Realizable without Additional Thermodynamic Costs?
- Designing Robust Quantum Refrigerators in Disordered Spin Models
- Enhanced Photonic Maxwell's Demon with Correlated Baths
- Geometric phaselike effects in a quantum heat engine
- Solution to the Fokker-Planck equation for slowly driven Brownian motion: Emergent geometry and a formula for the corresponding thermodynamic metric
- Microwave quantum diode
- Exactly solvable model of a passive Brownian heat engine and its comparison with active engines
- Ion-crystal demonstration of structural phase transition induced solely by temperature
- Irreversibility at zero temperature from the perspective of the environemnt
- Energy transport between heat baths with oscillating temperatures
- Quantum Advantage of Thermal Machines with Bose and Fermi Gases
- Experimental quantum thermodynamics with linear optics
- Revealing the strokes of autonomous quantum heat engines with work and heat fluctuations
- Tailoring the thermalization time of a cavity-field using distinct atomic reservoirs
- Quantum heat engines with complex working media, complete Otto cycles and heuristics
- Chiral quantum heating and cooling with an optically controlled ion
- Few-qubit quantum refrigerator for cooling a multi-qubit system
- Partitioning a macroscopic system into independent subsystems
- Strong Coupling Quantum Thermodynamics far away from Equilibrium: Non-Markovian Transient Quantum Heat and Work
- Speed limit for open systems coupled to general environments
- Incoherent control of optical signals; quantum heat engine approach
- -symmetric effects in measurement-based quantum thermal machines
- Non-equilibrium quantum thermodynamics in Coulomb crystals
- Enabling the self-contained refrigerator to work beyond its limits by filtering the reservoir
- Extractable work in quantum electromechanics
- Thermodynamic principles and implementations of quantum machines
- Quantum Work Fluctuations in connection with Jarzynski Equality
- Nonequilibrium quantum bounds to Landauer's principle: Tightness and effectiveness
- Bounds on fluctuations for ensembles of quantum thermal machines
- A quantum Stirling heat engine operating in finite time
- One qubit and one photon -- the simplest polaritonic heat engine
- Model-free optimization of power/efficiency tradeoffs in quantum thermal machines using reinforcement learning
- A Single-Ion Information Engine for Charging Quantum Battery
- The Heat Distribution of the Underdamped Langevin Equation
- Controlling the interactions in a cold atom quantum impurity system
- Rydberg ion flywheel for quantum work storage
- Transport and energetic properties of a ring of interacting spins coupled to heat baths
- Stochastic Floquet quantum heat engines and stochastic efficiencies
- Merits and Qualms of Work Fluctuations in Classical Fluctuation Theorems
- Cavity assisted measurements of heat and work in optical lattices
- Unveiling Detuning Effects for Heat-Current Control in Quantum Thermal Devices
- Information scrambling -- a quantum thermodynamic perspective
- Non-equilibrium quantum thermodynamics of a particle trapped in a controllable time-varying potential
- Finite-time two-spin quantum Otto engines: shortcuts to adiabaticity vs. irreversibility
- Thermodynamics of a continuous quantum heat engine: Interplay between population and coherence
- Qubit dynamics of ergotropy and environment-induced work
- Catalytic advantage in Otto-like two-stroke quantum engines
- Quantum gas in the fast forward scheme of adiabatically expanding cavities: Force and equation of states
- Bath engineering enhanced quantum critical engines
- Instantaneous equilibrium Transport for Brownian systems under time-dependent temperature and potential variations: Reversibility, Heat and work relations, and Fast Isentropic process
- Gravitational Quantum Well as an Effective Quantum Heat Engine
- Microscopic thermal machines using run-and-tumble particles
- Multilevel quantum Otto heat engines with identical particles
- Cooling with fermionic reservoir
- Active energy transport and the role of symmetry breaking in microscopic power grid
- Efficiency of optically pumping a quantum battery and a two-stroke heat engine
- Simplifying the design of multilevel thermal machines using virtual qubits
- An exactly solvable model of calorimetric measurements
- Generalized Quantum Fluctuation Theorem for Energy Exchange
- Absolute Single Ion Thermometry
- Quantum Brayton Engine of Non-Interacting Fermions in a One-Dimensional Box
- Maximally effcient quantum thermal machines fuelled by nonequilibrium steady states
- Thermodynamics of relativistic quantum fields confined in cavities
- Anti-Dynamical Casimir Effect as a Resource for Work Extraction
- Applications of Superconductor-Normal Metal Interfaces
- Survival and extreme statistics of work, heat, and entropy production in steady-state heat engines
- Open Quantum Rotors: Connecting Correlations and Physical Currents
- Self-consistency of optimizing finite-time Carnot engines with the low-dissipation model
- Monitored non-adiabatic and coherent-controlled quantum unital Otto heat engines: First four cumulants
- Exploring the Optimal Cycle for Quantum Heat Engine using Reinforcement Learning
- Quantum work: Reconciling quantum mechanics and thermodynamics
- An exactly solvable relativistic quantum Otto engine
- Many-body quantum heat engines based on free-fermion systems
- Fluctuations and stability of a fast driven Otto cycle
- Unitary work extraction from a Generalized Gibbs Ensemble using Bragg scattering
- Additional energy-information relations in thermodynamics of small systems
- Feedback traps for virtual potentials
- Stochastic thermodynamics of an electron-spin-resonance quantum dot system
- Absolutely stable time crystals at finite temperature
- Currents and fluctuations of quantum heat transport in harmonic chains
- Nonequilibrium thermodynamics and optimal cooling of a dilute atomic gas
- Efficiency of a microscopic heat engine subjected to stochastic resetting
- Dynamical chaotic phases and constrained quantum dynamics
- Quantum Carnot thermal machines re-examined: Definition of efficiency and the effects of strong coupling
- A Schmidt decomposition approach to quantum thermodynamics
- Quantum corrections to the entropy and its application in the study of quantum Carnot engines
- Noise-induced transport in the motion of trapped ions
- Boltzmann Distributions on a Quantum Computer via Active Cooling
- Transient Non-Confining Potentials for Speeding Up a Single Ion Heat Pump
- Enantiomer detection via Quantum Otto cycle
- Gambling Carnot Engine
- Testing a Quantum Heat Pump with a Two-Level Spin
- Quantum many-body thermal machines enabled by atom-atom correlations
- Catalytic enhancement in the performance of the microscopic two-stroke heat engine
- Three qubits in less than three baths: Beyond two-body system-bath interactions in quantum refrigerators
- Fluctuation theorems for genuine quantum mechanical regimes
- Detecting heat leaks with trapped ion qubits
- Coherent heat transfer leads to genuine quantum enhancement in the performances of continuous engines
- Geometric characterization for cyclic heat engines far from equilibrium
- Maximal steady-state entanglement in autonomous quantum thermal machines
- Single-shot measurements of phonon number states using the Autler-Townes effect
- Certifying quantum enhancements in thermal machines beyond the Thermodynamic Uncertainty Relation
- Trapped-atom Otto engine with light-induced dipole-dipole interactions
- Heat and charge transport in interacting nanoconductors driven by time-modulated temperatures
- Quantum Parametric Oscillator Heat Engines in Squeezed Thermal Baths: Foundational Theoretical Issues
- Enhanced Efficiency at Maximum Power in a Fock-Darwin Model Quantum Dot Engine
- Quantum optimal control in quantum technologies. Strategic report on current status, visions and goals for research in Europe
- Quantum thermodynamic advantage in work extraction from steerable quantum correlations
- Quantum signatures in quadratic optomechanical heat engine with an atom in a tapered trap
- Quantum duets working as autonomous thermal motors
- Quantum Zeno Engines and Heat Pumps
- Universal Quantum Fluctuation-Dissipation Relation for Systems Far From Equilibrium
- Fractional Quantum Heat Engine
- All-thermal reversal of heat currents using qutrits
- Temporal factorization of a non-stationary electromagnetic cavity field
- Quantum heat engine based on quantum interferometry: the SU(1,1) Otto cycle
- Effects of symmetry breaking of the structurally-disordered Hamiltonian ensembles on the anisotropic decoherence of qubits
- Quantum critical engine at finite temperatures
- Controlling thermodynamics of a quantum heat engine with modulated amplitude drivings
- Motional studies of one and two laser-cooled trapped ions for electric-field sensing applications
- First Law of Quantum Thermodynamics in a Driven Open Two-Level System
- Nonequilibrium quantum heat transport between structured environments
- Stochastic Thermodynamics and Hierarchy of Fluctuation Theorems with Multiple Reservoirs
- Pulsed multireservoir engineering for a trapped ion with applications to state synthesis and quantum Otto cycles
- Power-efficiency trade-off for finite-time quantum harmonic Otto heat engine via phase-space approach
- Vacuum radiation versus shortcuts to adiabaticity
- Artificially intelligent Maxwell's demon for optimal control of open quantum systems
- Numerical study of non-adiabatic quantum thermodynamics of the driven resonant level model: Non-equilibrium entropy production and higher order corrections
- Harnessing Nth Root Gates for Energy Storage
- Optimal qubit-mediated quantum heat transfer via noncommuting operators and strong coupling effects
- Improving Performance of Quantum Heat Engines using modified Otto cycle
- A photonic engine fueled by quantum-correlated atoms
- Potential renormalisation, Lamb shift and mean-force Gibbs state -- to shift or not to shift?
- A Numerical Method to Find the Optimal Thermodynamic Cycle in Microscopic Heat Engine
- Energy exchanges in a damped Langevin-like system with two thermal baths and an athermal reservoir
- Diffusiophoresis driven colloidal manipulation and shortcuts to adiabaticity
- Embedded Quantum Correlations in thermalized quantum Rabi systems
- Role of topology on the work distribution function of a quenched Haldane model of graphene
- Optimal performance of a three stroke heat engine in the microscopic regime
- Magnonic Thermal Machines
- Optimal linear cyclic quantum heat engines cannot benefit from strong coupling
- Continuous Three-level Quantum Heat Engine with High Performance Under Medium Temperature Difference
- Noise as a resource
- Universal relations and bounds for fluctuations in quasistatic small heat engines
- Thermal Operations in general are not memoryless
- Transient effects in quantum refrigerators with finite environments
- Full counting statistics and first-passage times in quantum Markovian processes: Ensemble relations, metastability, and fluctuation theorems
- An atom-doped photon engine: Extracting mechanical work from a quantum system via radiation pressure
- Impact of nonideal cycles on the efficiency of quantum heat engines
- Quantum control of classical motion: piston dynamics in a Rabi-coupled Bose-Einstein condensate
- Sample Complexity of Black Box Work Extraction
- Charging a quantum spin network towards Heisenberg-limited precision
- Spin-chain based quantum thermal machines
- Universal principles for sudden-quench quantum Otto engines
- Finite-time performance of a cyclic 2d quantum Ising heat engine
- Optimal constrained control for generally damped Brownian heat engines
- Anharmonicity can enhance the performance of quantum refrigerators
- Quantum thermal machine regimes in the transverse-field Ising model
- Stochastic Thermodynamics at the Quantum-Classical Boundary: A Self-Consistent Framework Based on Adiabatic-Response Theory
- Thermoelectric performance of nano junctions subjected to microwave driven spin-orbit coupling
- Testing the Quantum of Entropy
- Irreversibility in an optical parametric driven optomechanical system
- Asynchronous finite differences in most probable distribution with finite numbers of particles
- Non-equilibrium properties of trapped ions under sudden application of a laser
- Unified trade-off optimization of quantum harmonic Otto engine and refrigerator
- Quantum thermodynamics of single particle systems
- Universal efficiency boost in prethermal quantum heat engines at negative temperature
- Enhancing the efficiency of quantum measurement-based engines with entangling measurements
- Optimizing power and efficiency of a single spin heat engine
- On the energetic analysis of autonomous quantum systems
- Charge-Preserving Operations in Quantum Batteries
- Observation of synchronization between two quantum van der Pol oscillators in trapped ions
- Effects of correlated hopping on thermoelectric response of a quantum dot strongly coupled to ferromagnetic leads
- Irreversible Work Reduction by Disorder in Many-Body Quantum Systems
- Non-Classicality and Non-adiabaticity in a Single Trapped Ion
- Gaussian work extraction from random Gaussian states is nearly impossible
- Optimal Manipulation Of Correlations And Temperature In Quantum Thermodynamics
- Exploring outputs from concatenated stochastic heat engines
- Enhanced performance of sudden-quench quantum Otto cycles via multi-parameter control
- Classical dissipative cost of quantum control
- Quantum evolution of mixed states and performance of quantum heat engines
- Periodically-driven quantum thermal machines from warming up to limit cycle
- Strong system-bath coupling reshapes characteristics of quantum thermal machines
- Single-Atom Verification of the Information-Theoretical Bound of Irreversibility at the Quantum Level
- Quantum Otto engines at relativistic energies
- Adiabatic Dynamics and Shortcuts to Adiabaticity: Fundamentals and Applications
- Heat transport in a two-level system driven by a time-dependent temperature
- Thermodynamic bound on quantum state discrimination
- Minimum-Time Transitions between Thermal and Fixed Average Energy States of the Quantum Parametric Oscillator
- Nonlinear stochastic and quantum motion from Coulomb forces
- Enhancement of efficiency in the Dicke model quantum heat engine
- Finite-time thermal refrigerator in interacting Bose-Einstein Condensates
- Proposal for an autonomous quantum heat engine
- Heat, work, and fluctuations in a driven quantum resonator
- Implementation of a two-stroke quantum heat engine with a collisional model