Multi-phonon relaxation and generation of quantum states in a nonlinear mechanical oscillator
Abstract
The dissipative quantum dynamics of an anharmonic oscillator is investigated theoretically in the context of carbon-based nano-mechanical systems. In the short-time limit, it is known that macroscopic superposition states appear for such oscillators. In the long-time limit, single and multi-phonon dissipation lead to decoherence of the non-classical states. However, at zero temperature, as a result of two-phonon losses the quantum oscillator eventually evolves into a non-classical steady state. The relaxation of this state due to thermal excitations and one-phonon losses is numerically and analytically studied. The possibility of verifying the occurrence of the non-classical state is investigated and signatures of the quantum features arising in a ring-down setup are presented. The feasibility of the verification scheme is discussed in the context of quantum nano-mechanical systems.
Keywords
Cite
@article{arxiv.1302.1707,
title = {Multi-phonon relaxation and generation of quantum states in a nonlinear mechanical oscillator},
author = {Aurora Voje and Alexander Croy and Andreas Isacsson},
journal= {arXiv preprint arXiv:1302.1707},
year = {2013}
}
Comments
23 pages, 8 figures; Minor revisions; Accepted for publication in NJP