English

Maximal energy extraction via quantum measurement

Quantum Physics 2019-09-10 v2

Abstract

We study the maximal amount of energy that can be extracted from a finite quantum system by means of projective measurements. For this quantity we coin the expression "metrotropy" M\mathcal{M}, in analogy with "ergotropy" W\mathcal{W}, which is the maximal amount of energy that can be extracted by means of unitary operations. The study is restricted to the case when the system is initially in a stationary state, and therefore the ergotropy is achieved by means of a permutation of the energy eigenstates. We show that i) the metrotropy is achieved by means of an even combination of the identity and an involution permutation; ii) it is MW/2\mathcal{M}\leq\mathcal{W}/2, with the bound being saturated when the permutation that achieves the ergotropy is an involution.

Keywords

Cite

@article{arxiv.1905.10262,
  title  = {Maximal energy extraction via quantum measurement},
  author = {Andrea Solfanelli and Lorenzo Buffoni and Alessandro Cuccoli and Michele Campisi},
  journal= {arXiv preprint arXiv:1905.10262},
  year   = {2019}
}

Comments

12 pages, 3 figures. Contribution to the special issue of JSTAT "New Trends in Nonequilibrium Statistical Mechanics: Classical and Quantum Systems - nesmcq18". v2 = published version

R2 v1 2026-06-23T09:22:28.924Z