Demon Dynamics: Deterministic Chaos, the Szilard Map, and the Intelligence of Thermodynamic Systems
arXiv:1506.04327 · doi:10.1103/PhysRevLett.116.190601
Abstract
We introduce a deterministic chaotic system---the Szilard Map---that encapsulates the measurement, control, and erasure protocol by which Maxwellian Demons extract work from a heat reservoir. Implementing the Demon's control function in a dynamical embodiment, our construction symmetrizes Demon and thermodynamic system, allowing one to explore their functionality and recover the fundamental trade-off between the thermodynamic costs of dissipation due to measurement and due to erasure. The map's degree of chaos---captured by the Kolmogorov-Sinai entropy---is the rate of energy extraction from the heat bath. Moreover, an engine's statistical complexity quantifies the minimum necessary system memory for it to function. In this way, dynamical instability in the control protocol plays an essential and constructive role in intelligent thermodynamic systems.
5 pages, 3 figures, supplementary materials; http://csc.ucdavis.edu/~cmg/compmech/pubs/dds.htm
References in corpus (2)
Cited by in corpus (28)
- Erasure without work in an asymmetric, double-well potential
- Above and Beyond the Landauer Bound: Thermodynamics of Modularity
- Energetic cost of Hamiltonian quantum gates
- Correlation-powered Information Engines and the Thermodynamics of Self-Correction
- What did Erwin Mean? The Physics of Information from the Materials Genomics of Aperiodic Crystals and Water to Molecular Information Catalysts and Life
- Quantum fluctuation theorem to benchmark quantum annealers
- Nonequilibrium thermodynamics of erasure with superconducting flux logic
- Quantum scrambling and the growth of mutual information
- Initial-State Dependence of Thermodynamic Dissipation for any Quantum Process
- Roadmap on Quantum Thermodynamics
- Stochastic thermodynamics of relativistic Brownian motion
- Leveraging Environmental Correlations: The Thermodynamics of Requisite Variety
- Transient Dissipation and Structural Costs of Physical Information Transduction
- The heat and work of quantum thermodynamic processes with quantum coherence
- Harnessing Fluctuations in Thermodynamic Computing via Time-Reversal Symmetries
- Thermodynamics of Random Number Generation
- Quantum Information Dimension and Geometric Entropy
- Quantum to classical transition in an information ratchet
- Hamiltonian Memory: An Erasable Classical Bit
- The Harmonic Quantum Szilárd Engine
- Thermodynamics of quantum information in noisy polarizers
- Thermodynamics of Encoding and Encoders
- The Origins of Computational Mechanics: A Brief Intellectual History and Several Clarifications
- Consensus between Epistemic Agents is Difficult
- Szilard Engines as Quantum Thermodynamical Systems
- Memoryless Thermodynamics? A Reply
- New Fluctuation Theorem on Maxwell's Demon
- One-particle engine with a porous piston