The quantum-classical correspondence principle for work distributions
arXiv:1507.05763 · doi:10.1103/PhysRevX.5.031038
Abstract
For closed quantum systems driven away from equilibrium, work is often defined in terms of projective measurements of initial and final energies. This definition leads to statistical distributions of work that satisfy nonequilibrium work and fluctuation relations. While this two-point measurement definition of quantum work can be justified heuristically by appeal to the first law of thermodynamics, its relationship to the classical definition of work has not been carefully examined. In this paper we employ semiclassical methods, combined with numerical simulations of a driven quartic oscillator, to study the correspondence between classical and quantal definitions of work in systems with one degree of freedom. We find that a semiclassical work distribution, built from classical trajectories that connect the initial and final energies, provides an excellent approximation to the quantum work distribution when the trajectories are assigned suitable phases and are allowed to interfere. Neglecting the interferences between trajectories reduces the distribution to that of the corresponding classical process. Hence, in the semiclassical limit, the quantum work distribution converges to the classical distribution, decorated by a quantum interference pattern. We also derive the form of the quantum work distribution at the boundary between classically allowed and forbidden regions, where this distribution tunnels into the forbidden region. Our results clarify how the correspondence principle applies in the context of quantum and classical work distributions, and contribute to the understanding of work and nonequilibrium work relations in the quantum regime.
22 pages, 9 figures
References in corpus (20)
- Fluctuation theorems: Work is not an observable
- Description of quantum coherence in thermodynamic processes requires constraints beyond free energy
- Diamondoid Molecules
- Experimental Test of Quantum Jarzynski Equality with a Trapped Ion System
- Fluctuation Theorem for Arbitrary Open Quantum Systems
- Work measurement as a generalized quantum measurement
- Non-equilibrium quantum fluctuations of work
- Employing trapped cold ions to verify the quantum Jarzynski equality
- Influence of measurements on the statistics of work performed on a quantum system
- Jarzynski equation for a simple quantum system: Comparing two definitions of work
- Statistics of work performed on a forced quantum oscillator
- Work and its fluctuations in a driven quantum system
- Incomplete measurement of work in a dissipative two level system
- Interference of Identical Particles and the Quantum Work Distribution
- Moments of work in the two-point measurement protocol for a driven open quantum system
- Quantum fluctuation theorems and power measurements
- On a new definition of quantum entropy
- Calculating work in adiabatic two-level quantum Markovian master equations: A characteristic function method
- Model Studies on the Quantum Jarzynski Relation
- Fluctuations of work in nearly adiabatically driven open quantum systems
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