Quantum fluctuation theorems and generalized measurements during the force protocol
arXiv:1312.7104 · doi:10.1103/PhysRevE.89.032114
Abstract
Generalized measurements of an observable performed on a quantum system during a force protocol are investigated and conditions that guarantee the validity of the Jarzynski equality and the Crooks relation are formulated. In agreement with previous studies by Campisi {\it et al.} [M. Campisi, P. Talkner, and P. Hänggi, Phys. Rev. Lett. {\bf 105}, 140601 (2010); Phys. Rev. E {\bf 83}, 041114 (2011)], we find that these fluctuation relations are satisfied for projective measurements; however, for generalized measurements special conditions on the operators determining the measurements need to be met. For the Jarzynski equality to hold, the measurement operators of the forward protocol must be normalized in a particular way. The Crooks relation additionally entails that the backward and forward measurement operators depend on each other. Yet, quite some freedom is left as to how the two sets of operators are interrelated. This ambiguity is removed if one considers selective measurements, which are specified by a {\it joint} probability density function of work and measurement results of the considered observable. We find that the respective forward and backward joint probabilities satisfy the Crooks relation only if the measurement operators of the forward and backward protocols are the time-reversed adjoints of each other. In this case, the work probability density function {\it conditioned} on the measurement result satisfies a modified Crooks relation. The modification appears as a protocol-dependent factor that can be expressed by the information gained by the measurements during the forward and backward protocols. Finally, detailed fluctuation theorems with an arbitrary number of intervening measurements are obtained.
9 pages; published in Phys. Rev. E
References in corpus (12)
- Fluctuation theorems: Work is not an observable
- The Physics of Maxwell's demon and information
- Dissipation: The phase-space perspective
- Fluctuation Theorem for Arbitrary Open Quantum Systems
- Nonequilibrium Detailed Fluctuation Theorem for Repeated Discrete Feedback
- Fluctuation theorems in driven open quantum systems
- Fluctuation theorems for continuously monitored quantum fluxes
- The length of time's arrow
- Quantum work relations and response theory
- Microcanonical quantum fluctuation theorems
- Influence of measurements on the statistics of work performed on a quantum system
- Transient quantum fluctuation theorems and generalized measurements
Cited by in corpus (44)
- The role of quantum information in thermodynamics --- a topical review
- {\it Colloquium:} Statistical Mechanics and Thermodynamics at Strong Coupling: Quantum and Classical
- Work measurement as a generalized quantum measurement
- Quantum fluctuation theorems for arbitrary environments: adiabatic and non-adiabatic entropy production
- Nonequilibrium potential and fluctuation theorems for quantum maps
- Single-Temperature Quantum Engine Without Feedback Control
- Single atom energy-conversion device with a quantum load
- The quantum-classical correspondence principle for work distributions
- Work estimation and work fluctuations in the presence of non-ideal measurements
- Feedback controlled heat transport in quantum devices: Theory and solid state experimental proposal
- Generalized energy measurements and modified transient quantum fluctuation theorems
- Quantum Work in the Bohmian framework
- Fluctuation Theorems for Continuous Quantum Measurement and Absolute Irreversibility
- Non-equilibrium quantum-heat statistics under stochastic projective measurements
- Quantum coherence and criticality in irreversible work
- Quantum jump model for a system with a finite-size environment
- Maximal energy extraction via quantum measurement
- Reconstructing quantum entropy production to probe irreversibility and correlations
- Fluctuations of work in nearly adiabatically driven open quantum systems
- Non-equilibrium thermodynamics of continuously measured quantum systems: a circuit-QED implementation
- Quantum Brownian motion under generalized position measurements: A converse Zeno scenario
- The Bayesian Second Law of Thermodynamics
- Quantum Work Fluctuations in connection with Jarzynski Equality
- Generalized energy measurements and quantum work compatible with fluctuation theorems
- A thermodynamically consistent approach to the energy costs of quantum measurements
- Thermalization processes induced by quantum monitoring in multi-level systems
- Work Fluctuations in Bosonic Josephson Junctions
- Deformed Jarzynski Equality
- Quantum-heat fluctuation relations in -level systems under projective measurements
- Verifying detailed fluctuation relations for discrete feedback-controlled quantum dynamics
- Exploring the extent of validity of quantum work fluctuation theorems in the presence of weak measurements
- Energy fluctuation relations and repeated quantum measurements
- Observation of partial and infinite-temperature thermalization induced by repeated measurements on a quantum hardware
- Ancilla-assisted measurement of quantum work
- Comparison between quantum jumps and master equation in the presence of a finite environment
- Calorimetric measurement of work for a driven harmonic oscillator
- Comment on "Experimental Verification of a Jarzynski-Related Information-Theoretic Equality by a Single Trapped Ion" PRL 120 010601 (2018)
- Noise as a resource
- Quantum Fluctuation Theorem for Arbitrary Measurement and Feedback Schemes
- Single energy measurement Integral Fluctuation theorem and non-projective measurements
- Explicit noise and dissipation operators for quantum stochastic thermodynamics
- Universal energy fluctuations in inelastic scattering processes
- Quantum thermodynamics under continuous monitoring: a general framework
- Work Statistics and Quantum Trajectories: No-Click Limit and non-Hermitian Hamiltonians