| Literature DB >> 28618535 |
Marcin Łobejko1,2, Jerzy Łuczka1,2, Peter Talkner1,3.
Abstract
The statistics of work performed on a system by a sudden random quench is investigated. Considering systems with finite dimensional Hilbert spaces we model a sudden random quench by randomly choosing elements from a Gaussian unitary ensemble (GUE) consisting of Hermitian matrices with identically, Gaussian distributed matrix elements. A probability density function (pdf) of work in terms of initial and final energy distributions is derived and evaluated for a two-level system. Explicit results are obtained for quenches with a sharply given initial Hamiltonian, while the work pdfs for quenches between Hamiltonians from two independent GUEs can only be determined in explicit form in the limits of zero and infinite temperature. The same work distribution as for a sudden random quench is obtained for an adiabatic, i.e., infinitely slow, protocol connecting the same initial and final Hamiltonians.Year: 2017 PMID: 28618535 DOI: 10.1103/PhysRevE.95.052137
Source DB: PubMed Journal: Phys Rev E ISSN: 2470-0045 Impact factor: 2.529