On Quantum Semipermeable Barriers: Investigating Maxwell's Demon Toolbox
Abstract
We study quantum Maxwell's demon in a discrete space-time setup. We consider a collection of particles hopping on a one-dimensional chain and a semipermeable barrier that allows the particles to hop in only one direction. Our main result is a formulation of a local unitary dynamics describing the action of this barrier. Such dynamics utilises an auxiliary system and we study how properties of influence the behaviour of particles. An immediate consequence of unitarity is the fact that particles cannot be trapped on one side of the barrier forever, unless is infinite. In addition, coherent superpositions and quantum correlations are affected once particles enter the confinement region. Finally, we show that initial superposition of allows the barrier to act as a beam splitter.
Cite
@article{arxiv.2105.12179,
title = {On Quantum Semipermeable Barriers: Investigating Maxwell's Demon Toolbox},
author = {Andrzej Grudka and Pawel Kurzynski and Antoni Wojcik},
journal= {arXiv preprint arXiv:2105.12179},
year = {2021}
}
Comments
11 pages, 3 figures, comments welcome