Leggett-Garg inequalities for quantum fluctuating work
arXiv:1708.04068 · doi:10.3390/e20030200
Abstract
The Leggett-Garg inequalities serve to test whether or not quantum correlations in time can be explained within a classical macrorealistic framework. We apply this test to thermodynamics and derive a set of Leggett- Garg inequalities for the statistics of fluctuating work done on a quantum system unitarily driven in time. It is shown that these inequalities can be violated in a driven two-level system, thereby demonstrating that there exists no general macrorealistic description of quantum work. These violations are shown to emerge within the standard Two-Projective-Measurement scheme as well as for alternative definitions of fluctuating work that are based on weak measurement. Our results elucidate the influences of temporal correlations on work extraction in the quantum regime and highlight a key difference between quantum and classical thermodynamics.
v2, 1 figure, accepted version to appear in Entropy (Special Issue on "Quantum Thermodynamics II")
References in corpus (14)
- Fluctuation theorems: Work is not an observable
- Weak values and the Leggett-Garg inequality in solid-state qubits
- Work measurement as a generalized quantum measurement
- Ideal negative measurements in quantum walks disprove theories based on classical trajectories
- Non-equilibrium quantum fluctuations of work
- The conditions for quantum violation of macroscopic realism
- Quantum fluctuation theorems, contextuality and work quasi-probabilities
- Quantum theory of successive projective measurements
- Necessary and sufficient conditions for macroscopic realism from quantum mechanics
- Probing Quantum Interference Effects in the Work Distribution
- Quasi-probability distributions for observables in dynamic systems
- Measurement-dependent corrections to work distributions arising from quantum coherences
- Leggett-Garg inequalities for the statistics of electron transport
- Macroscopic realism of quantum work fluctuations
Cited by in corpus (8)
- Experimental demonstration of quantum effects in the operation of microscopic heat engines
- {\it Colloquium:} Statistical Mechanics and Thermodynamics at Strong Coupling: Quantum and Classical
- Work fluctuations in slow processes: quantum signatures and optimal control
- An operational approach to quantum stochastic thermodynamics
- Experimentally reducing the quantum measurement back-action in work distributions by a collective measurement
- Fluctuating work in coherent quantum systems: proposals and limitations
- Multiple entropy production for multitime quantum processes
- Quantum advantage from negativity of a work quasiprobability distribution