Relaxation oscillations and frequency entrainment in quantum mechanics
Quantum Physics
2022-04-20 v2 Adaptation and Self-Organizing Systems
Chaotic Dynamics
Abstract
Frequency entrainment of continuous-variable oscillators has to date been restrained to the weakly nonlinear regime. Here we overcome this bottleneck and extend frequency entrainment of quantum continuous-variable oscillators to arbitrary nonlinearities. The previously known steady state of such quantum oscillators in the weakly nonlinear regime (also known as a Stuart-Landau oscillator) is shown to emerge as a special case. Most importantly, the hallmark of strong nonlinearity--relaxation oscillations--is shown in quantum mechanics. Depending on the oscillator's nonlinearity, relaxation oscillations are found to occur via two distinct mechanisms in phase space.
Keywords
Cite
@article{arxiv.1711.07376,
title = {Relaxation oscillations and frequency entrainment in quantum mechanics},
author = {A. Chia and L. C. Kwek and C. Noh},
journal= {arXiv preprint arXiv:1711.07376},
year = {2022}
}
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