Taming the time evolution in overdamped systems: shortcuts elaborated from fast-forward and time-reversed protocols
Abstract
Using a reverse-engineering approach on the time-distorted solution in a reference potential, we work out the external driving potential to be applied to a Brownian system in order to slow or accelerate the dynamics, or even to invert the arrow of time. By welding a direct and time-reversed evolution towards a well chosen common intermediate state, we derive analytically a smooth protocol to connect two \emph{arbitrary} states in an arbitrarily short amount of time. Not only does the reverse-engineering approach proposed in this Letter contain the current -- rather limited -- catalogue of explicit protocols but it also provides a systematic strategy to build the connection between arbitrary states with a physically admissible driving. Optimization and further generalizations are also discussed.
Keywords
Cite
@article{arxiv.2110.03758,
title = {Taming the time evolution in overdamped systems: shortcuts elaborated from fast-forward and time-reversed protocols},
author = {Carlos A. Plata and Antonio Prados and Emmanuel Trizac and David Guéry-Odelin},
journal= {arXiv preprint arXiv:2110.03758},
year = {2021}
}
Comments
6 pages+supplemental material; accepted for publication in Physical Review Letters