English

Non-equilibrium thermodynamics of continuously measured quantum systems: a circuit-QED implementation

Quantum Physics 2018-10-30 v2 Statistical Mechanics Superconductivity

Abstract

We propose a fully operational framework to study the non-equilibrium thermodynamics of a quantum system SS that is coupled to a detector DD whose state is continuously monitored, allowing to single out individual quantum trajectories of SS. We focus on detailed fluctuation theorems and characterize the entropy production of the system. We establish fundamental differences with respect to the thermodynamic of unmonitored, unitarily evolved systems. We consider the paradigmatic example of circuit-QED, where superconducting qubits can be coupled to a continuously monitored resonator and show numerical simulations using state of the art experimental parameters.

Keywords

Cite

@article{arxiv.1704.00574,
  title  = {Non-equilibrium thermodynamics of continuously measured quantum systems: a circuit-QED implementation},
  author = {P. G. Di Stefano and J. J. Alonso and E. Lutz and G. Falci and M. Paternostro},
  journal= {arXiv preprint arXiv:1704.00574},
  year   = {2018}
}

Comments

8 pages, 4 figures