Miniatures on Open Quantum Systems
arXiv:2601.20373 · doi:10.1007/s11785-026-01967-9
Abstract
We presents a unified and concise exposition of key topics in the mathematical theory of open quantum systems, developed within the framework of operator algebras. The manuscript consolidates and extends a series of invited articles originally prepared for the Modern Encyclopedia of Mathematical Physics, combining foundational material with modern perspectives on non-equilibrium quantum statistical mechanics. After introducing the C*- and W*-algebraic formulation of quantum mechanics, the paper reviews quantum dynamical systems, KMS states, and Tomita-Takesaki modular theory, as well as CCR and CAR algebras for bosonic and fermionic systems. Particular emphasis is placed on infinite systems, non-equilibrium steady states, entropy production, and linear response theory. The later sections develop a systematic treatment of small systems coupled to reservoirs, open lattice quantum spin systems, culminating in a detailed discussion of competing notions of quantum entropy production. The presentation highlights structural insights, conceptual clarity, and connections between equilibrium and non-equilibrium phenomena, providing a self-contained reference for researchers and graduate students in mathematical physics.
References in corpus (29)
- Fluctuation theorems: Work is not an observable
- Experimental Test of Quantum Jarzynski Equality with a Trapped Ion System
- Experimental reconstruction of work distribution and verification of fluctuation relations at the full quantum level
- Experimental characterization of a spin quantum heat engine
- Extracting quantum work statistics and fluctuation theorems by single qubit interferometry
- Measuring the characteristic function of the work distribution
- Work measurement as a generalized quantum measurement
- Irreversibility and the arrow of time in a quenched quantum system
- Quantum Operation Time Reversal
- Dissipative Transport: Thermal Contacts and Tunnelling Junctions
- Equilibrium Statistical Mechanics of Fermion Lattice Systems
- Employing Circuit QED to Measure Nonequilibrium Work Fluctuations
- Equivalent forms of the Bessis-Moussa-Villani conjecture
- Thermometry of ultracold atoms via non-equilibrium work distributions
- Measuring work and heat in ultracold quantum gases
- Quantum Hypothesis Testing and Non-Equilibrium Statistical Mechanics
- Large deviation approach to non equilibrium processes in stochastic lattice gases
- Entropy production in nonequilibrium thermodynamics: a review
- Measuring the heat exchange of a quantum process
- Another Return of 'Return to Equilibrium'
- Minimum entropy production principle from a dynamical fluctuation law
- Entropic Fluctuations in Statistical Mechanics I. Classical Dynamical Systems
- On entropy production of repeated quantum measurements I. General theory
- Some Properties of Correlations of Quantum Lattice Systems in Thermal Equilibrium
- Theory of Non-Equilibrium Sationary States as a Theory of Resonances
- Introduction to representations of the canonical commutation and anticommutation relations
- On entropy production of repeated quantum measurements II. Examples
- A Remark on the Strict Positivity of the Entropy Production
- Entropic Fluctuation Theorems for the Spin-Fermion Model