English

Quantum Brownian motion for periodic coupling to an Ohmic bath

Quantum Physics 2007-05-23 v2

Abstract

We show theoretically how the periodic coupling between an engineered reservoir and a quantum Brownian particle leads to the formation of a dynamical steady state which is characterized by an effective temperature above the temperature of the environment. The average steady state energy of the system has a higher value than expected from the environmental properties. The system experiences repeatedly a non-Markovian behavior -- as a consequence the corresponding effective decay for long evolution times is always on average stronger than the Markovian one. We also highlight the consequences of the scheme to the Zeno--anti-Zeno crossover which depends, in addition to the periodicity τ\tau, also on the total evolution time of the system.

Keywords

Cite

@article{arxiv.quant-ph/0611274,
  title  = {Quantum Brownian motion for periodic coupling to an Ohmic bath},
  author = {J. Piilo and S. Maniscalco and K. -A. Suominen},
  journal= {arXiv preprint arXiv:quant-ph/0611274},
  year   = {2007}
}

Comments

7 pages, 3 figures. V2: Minor modifications according to the referee's suggestions and title modified

R2 v1 2026-07-22T19:58:10.768Z