Measurement-dependent corrections to work distributions arising from quantum coherences
arXiv:1705.10296 · doi:10.1103/PhysRevA.96.052115
Abstract
For a quantum system undergoing a unitary process work is commonly defined based on the Two Projective Measurement (TPM) protocol which measures the energies of the system before and after the process. However, it is well known that projective measurements disregard quantum coherences of the system with respect to the energy basis, thus removing potential quantum signatures in the work distribution. Here we consider weak measurements of the system's energy difference and establish corrections to work averages arising from initial system coherences. We discuss two weak measurement protocols that couple the system to a detector, prepared and measured either in the momentum or the position eigenstates. Work averages are derived for when the system starts in the proper thermal state versus when the initial system state is a pure state with thermal diagonal elements and coherences characterised by a set of phases. We show that by controlling only the phase differences between the energy eigenstate contributions in the system's initial pure state, the average work done during the same unitary process can be controlled. By changing the phases alone one can toggle from regimes where the systems absorbs energy, i.e. a work cost, to the ones where it emits energy, i.e. work can be drawn. This suggests that the coherences are additional resources that can be used to manipulate or store energy in a quantum system.
9 pages, 3 figures
References in corpus (12)
- Environment-Assisted Quantum Walks in Photosynthetic Energy Transfer
- Dephasing assisted transport: Quantum networks and biomolecules
- Fluctuation theorems: Work is not an observable
- Description of quantum coherence in thermodynamic processes requires constraints beyond free energy
- The role of quantum measurement in stochastic thermodynamics
- Work measurement as a generalized quantum measurement
- Non-equilibrium quantum fluctuations of work
- Sequential weak measurement
- Probing Quantum Interference Effects in the Work Distribution
- Heat-exchange statistics in driven open quantum systems
- Quasiprobabilistic Interpretation of Weak measurements in Mesoscopic Junctions
- Work and its fluctuations in a driven quantum system