Work and information processing in a solvable model of Maxwell's demon
arXiv:1206.5553 · doi:10.1073/pnas.1204263109
Abstract
We describe a minimal model of an autonomous Maxwell demon, a device that delivers work by rectifying thermal fluctuations while simultaneously writing information to a memory register. We solve exactly for the steady-state behavior of our model, and we construct its phase diagram. We find that our device can also act as a "Landauer eraser", using externally supplied work to remove information from the memory register. By exposing an explicit, transparent mechanism of operation, our model offers a simple paradigm for investigating the thermodynamics of information processing by small systems.
Main Text (6 pages, 3 figures) + Suppl. Info. (3 pages). To appear in PNAS
References in corpus (6)
- The Physics of Maxwell's demon and information
- Second Law of Thermodynamics with Discrete Quantum Feedback Control
- The thermodynamic meaning of negative entropy
- Nonequilibrium Detailed Fluctuation Theorem for Repeated Discrete Feedback
- Extracting work from a single heat bath through feedback
- Information and flux in a feedback controlled Brownian ratchet
Cited by in corpus (30)
- Thermodynamics of a physical model implementing a Maxwell demon
- Efficiency of cellular information processing
- Cost and Precision of Brownian Clocks
- Maxwell's demon in biochemical signal transduction with feedback loop
- Fluctuation Theorem for Partially-masked Nonequilibrium Dynamics
- Second-law-like inequalities with information and their interpretations
- Thermodynamics of statistical inference by cells
- Coherence-enhanced efficiency of feedback-driven quantum engines
- Stochastic thermodynamics with information reservoirs
- Maximum Caliber: a general variational principle for dynamical systems
- Information-theoretic vs. thermodynamic entropy production in autonomous sensory networks
- Finite-time erasing of information stored in fermionic bits
- Multipartite information flow for multiple Maxwell demons
- Stochastic thermodynamics of Langevin systems under time-delayed feedback control: I. Second-law-like inequalities
- Role of measurement-feedback separation in autonomous Maxwell's demons
- The Second Laws for an Information driven Current through a Spin Valve
- Critical behavior of entropy production and learning rate: Ising model with an oscillating field
- Stochastic Efficiency: Five Case Studies
- Delay-induced transport in a rocking ratchet under feedback control
- Coefficient of performance under maximum criterion in a two-level atomic system as a refrigerator
- Thermodynamics of Information Processing Based on Enzyme Kinetics: an Exactly Solvable Model of Information Pump
- Optimized finite-time information machine
- Ultra-low-energy straintronics using multiferroic composites
- Extracting work from the magnetic field coupled Brownian particles
- Relations Between Work and Entropy Production for General Information-Driven, Finite-State Engines
- Landauer limit of energy dissipation in a magnetostrictive particle
- Nonequilibrium free energy estimation conditioned on measurement outcomes
- Stochastic Thermodynamics, Reversible Dynamical Systems and Information Theory
- Carnot's theorem and Szilárd engine
- Autonomous Brownian motor driven by nonadiabatic variation of internal parameters