A Micrometer-sized Heat Engine Operating Between Bacterial Reservoirs
arXiv:1601.03130 · doi:10.1038/nphys3870
Abstract
Artificial micro heat engines are prototypical models to explore and elucidate the mechanisms of energy transduction in a regime that is dominated by fluctuations [1-2]. Micro heat engines realized hitherto mimicked their macroscopic counterparts and operated between reservoirs that were effectively thermal [3-7]. For such reservoirs, temperature is a well-defined state variable and stochastic thermodynamics provides a precise framework for quantifying engine performance [8-9]. It remains unclear whether these concepts readily carry over to situations where the reservoirs are out-of-equilibrium [10], a scenario of particular importance to the functioning of synthetic [11-12] and biological [13] micro engines and motors. Here we experimentally realized a micrometer-sized active Stirling engine by periodically cycling a colloidal particle in a time-varying harmonic optical potential across bacterial baths at different activities. Unlike in equilibrium thermal reservoirs, the displacement statistics of the trapped particle becomes increasingly non-Gaussian with activity. We show that as much as 85\% of the total power output and 50\% of the overall efficiency stems from large non-Gaussian particle displacements alone. Most remarkably, at the highest activities investigated, the efficiency of our quasi-static active heat engines surpasses the equilibrium saturation limit of Stirling efficiency - the maximum efficiency of a Stirling engine with the ratio of cold and hot reservoir temperatures . Crucially, the failure of effective temperature descriptions [14-16] for active reservoirs highlights the dire need for theories that can better capture the physics of micro motors and heat engines that operate in strongly non-thermal environments.
14 Pages, 3 Figures
References in corpus (9)
- Self-motile colloidal particles: from directed propulsion to random walk
- Artificial Brownian motors: Controlling transport on the nanoscale
- Efficiency at maximum power: An analytically solvable model for stochastic heat engines
- Single ion heat engine with maximum efficiency at maximum power
- Brownian Carnot engine
- Sedimentation, trapping, and rectification of dilute bacteria
- Generalized energy equipartition in harmonic oscillators driven by active baths
- Fluctuations and Rheology in Active Bacterial Suspensions
- An all-optical nanomechanical heat engine
Cited by in corpus (131)
- Universal trade-off between power, efficiency, and constancy in steady-state heat engines
- Inertial effects of self-propelled particles: from active Brownian to active Langevin motion
- Quantum absorption refrigerator with trapped ions
- Irreversibility in active matter systems: Fluctuation theorem and mutual information
- Squeezed thermal reservoirs as a resource for a nano-mechanical engine beyond the Carnot limit
- Thermodynamics of precision in quantum non equilibrium steady states
- Generic Properties of Stochastic Entropy Production
- Entropy production of active particles and for particles in active baths
- Time-(ir)reversibility in active matter: from micro to macro
- Universal Coherence-Induced Power Losses of Quantum Heat Engines in Linear Response
- Experimental Realization of a Minimal Microscopic Heat Engine
- Autonomous engines driven by active matter: Energetics and design principles
- Active Brownian Heat Engines
- Stochastic Stirling engine operating in contact with active baths
- Driving rapidly while remaining in control: classical shortcuts from Hamiltonian to stochastic dynamics
- Enhanced diffusion, swelling and slow reconfiguration of a single chain in non-Gaussian active bath
- Active engines: Thermodynamics moves forward
- Effects of active fluctuations on energetics of a colloidal particle: superdiffusion, dissipation and entropy production
- Entropy production and work fluctuation relations for a single particle in active bath
- Efficiency fluctuations in microscopic machines
- Thermodynamic cycles with active matter
- Anomalous Topological Active Matter
- Heating and Cooling are Fundamentally Asymmetric and Evolve Along Distinct Pathways
- Entropy production fluctuations encode collective behavior in active matter
- A non-equilibrium quantum many-body Rydberg atom engine
- A stochastic heat engine using an active particle
- Universal Bounds on Fluctuations in Continuous Thermal Machines
- Collective forces in scalar active matter
- From quantum heat engines to laser cooling: Floquet theory beyond the Born-Markov approximation
- Brownian motion of a circle swimmer in a harmonic trap
- Optimal transport and control of active drops
- Active Brownian particles driven by constant affinity
- Physically consistent numerical solver for time-dependent Fokker-Planck equations
- Fluctuations in heat engines
- Underdamped Active Brownian Heat Engine
- Stochastic Work Extraction in a colloidal heat engine in presence of colored noise
- Extracting maximum power from active colloidal heat engines
- Diverging, but negligible power at Carnot efficiency: theory and experiment
- Non-equilibrium fluctuations and nonlinear response of an active bath
- Translational and rotational dynamics of a self-propelled Janus probe in crowded environments
- Information engine in a nonequilibrium bath
- Brownian heat engine with active reservoirs
- Engineered Swift Equilibration of a Brownian Gyrator
- Colloidal transport in bacteria suspensions: from bacteria scattering to anomalous and enhanced diffusion
- Bounds on fluctuations for finite-time quantum Otto cycle
- Autonomous actuation of zero modes in mechanical networks far from equilibrium
- Second law for active heat engines
- Irreversibility in active matter: General framework for active Ornstein-Uhlenbeck particles
- Experimental realization of Feynman's ratchet
- Rapid-Prototyping a Brownian Particle in an Active Bath
- Optimal finite-time Brownian Carnot engine
- Finite-Time Thermodynamics of Fluctuations in Microscopic Heat Engines
- Abstract models for heat engines
- Reconfiguration, swelling and tagged monomer dynamics of a single polymer chain in Gaussian and non-Gaussian active baths
- Thermal ratchet effect in confining geometries
- Tuning the performance of a micrometer-sized Stirling engine through reservoir engineering
- Thermodynamics of active matter: Tracking dissipation across scales
- Enhanced motility in a binary mixture of active nano/microswimmers
- Stochastic efficiency of an isothermal work-to-work converter engine
- Calorimetry for active systems
- Driven probe under harmonic confinement in a colloidal bath
- Stochastic Heat Engine Powered By Active Dissipation
- Activity driven transport in harmonic chains
- Thermodynamics of one and two-qubit nonequilibrium heat engines running between squeezed thermal reservoirs
- A Brownian cyclic engine operating in a viscoelastic active suspension
- Optimisation of an active heat engine
- Obtaining efficient thermal engines from interacting Brownian particles under time dependent periodic drivings
- Quantum jump approach to microscopic heat engines
- Work extraction and performance of colloidal heat engines in viscoelastic baths
- Aggregate morphology of active Brownian particles on porous, circular walls
- Brownian particle in a Poisson-shot-noise active bath: exact statistics, effective temperature, and inference
- Efficiency of isothermal active matter engines: Strong driving beats weak driving
- Colossal power extraction from active cyclic Brownian information engines
- Stationary states of activity-driven harmonic chains
- Driven Brownian particle as a paradigm for a nonequilibrium heat bath: Effective temperature and cyclic work extraction
- Effects of the non-Markovianity and non-Gaussianity of active environmental noises on engine performance
- Thermal brachistochrone for harmonically confined Brownian particles
- Current fluctuations in nonequilibrium discontinuous phase transitions
- Enhanced directionality of active processes in a viscoelastic bath
- Thermodynamically consistent model of an active Ornstein-Uhlenbeck particle
- Exactly solvable model of a passive Brownian heat engine and its comparison with active engines
- Transport and Energetics of Bacterial Rectification
- Optimal finite-time heat engines under constrained control
- Stochastic energetics of a colloidal particle trapped in a viscoelastic bath
- Rectification of Twitching bacteria through narrow channels: A numerical simulations study
- Constraints between entropy production and its fluctuations in nonthermal engines
- Asymmetric Thermal Relaxation in Driven Systems: Rotations go Opposite Ways
- Modeling the Efficiency and Effective Temperature of Bacterial Heat Engines
- Microscopic thermal machines using run-and-tumble particles
- Energetics of critical oscillators in active bacterial baths
- Two coupled, driven Ising spin systems working as an Engine
- Brownian Thermometry Beyond Equilibrium
- Effects of the self-propulsion parity on the efficiency of a fuel-consuming active heat engine
- Single active particle engine utilizing a non-reciprocal coupling between particle's position and self-propulsion
- Quantifying configurational information for a stochastic particle in a flow-field
- Carnot, Stirling, Ericsson stochastic heat engines: Efficiency at maximum power
- Relation between fluctuations and efficiency at maximum power for small heat engines
- Efficiency of a microscopic heat engine subjected to stochastic resetting
- Quantum Carnot thermal machines re-examined: Definition of efficiency and the effects of strong coupling
- Active particles in moving traps: minimum work protocols and information efficiency of work extraction
- Enhanced velocity fluctuations in interacting swimmer suspensions
- Performance limits of information engines
- Gambling Carnot Engine
- Towards Stirling engine using an optically confined particle subjected to asymmetric temperature profile
- Enantiomer detection via Quantum Otto cycle
- Bona fide stochastic resonance under nonGaussian active fluctuations
- Exact distribution for work and stochastic efficiency of an isothermal machine
- Universal Quantum Fluctuation-Dissipation Relation for Systems Far From Equilibrium
- Correlation-enhanced Stability of Microscopic Cyclic Heat Engines
- Active-passive mixtures with bulk loading: a minimal active engine in one dimension
- Optimal linear cyclic quantum heat engines cannot benefit from strong coupling
- Stochastic Thermodynamics and Hierarchy of Fluctuation Theorems with Multiple Reservoirs
- Universal relations and bounds for fluctuations in quasistatic small heat engines
- Geometric view of stochastic thermodynamics for non-equilibrium steady states
- Thermodynamic nature of irreversibility in active matter
- Optimizing energy conversion with nonthermal resources in steady-state quantum devices
- Infinite family of universal profiles for heat current statistics in Fourier's law
- Heat engine model exhibit super-universal feature and capture the efficiencies of different power plants
- Active Ornstein-Uhlenbeck Model for Bacterial Heat Engines
- Optimal constrained control for generally damped Brownian heat engines
- Maximum power Stirling-like heat engine with a harmonically confined Brownian particle
- A stochastic Stirling engine powered by an active particle
- Micro-rheology of a particle in a nonlinear bath: Stochastic Prandtl-Tomlinson model
- Optimizing power and efficiency of a single spin heat engine
- Exploring outputs from concatenated stochastic heat engines
- Brownian magneto-gyrator as a tunable microengine
- Thermodynamic optimization equalities in weakly driven processes
- Effective diffusion of a tracer in active bath: a path-integral approach
- Optimal power and efficiency of odd engines
- Periodically-driven quantum thermal machines from warming up to limit cycle
- Memory-aware feedback enhances power in active information engines