Quantum Time Crystal By Decoherence: Proposal With Incommensurate Charge Density Wave Ring
Quantum Physics
2017-09-28 v3
Abstract
We show that time translation symmetry of a ring system with a macroscopic quantum ground state is broken by decoherence. In particular, we consider a ring-shaped incommensurate charge density wave (ICDW ring) threaded by a fluctuating magnetic flux: the Caldeira-Leggett model is used to model the fluctuating flux as a bath of harmonic oscillators. We show that the charge density expectation value of a quantized ICDW ring coupled to its environment oscillates periodically. The Hamiltonians considered in this model are time independent unlike "Floquet time crystals" considered recently. Our model forms a metastable quantum time crystal with a finite length in space and in time.
Cite
@article{arxiv.1703.04002,
title = {Quantum Time Crystal By Decoherence: Proposal With Incommensurate Charge Density Wave Ring},
author = {Keiji Nakatsugawa and Toshiyuki Fujii and Satoshi Tanda},
journal= {arXiv preprint arXiv:1703.04002},
year = {2017}
}
Comments
17 pages, 4 figures