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Open Quantum Systems Decoherence

Symmetry-breaking oscillations in membrane optomechanics

arXiv
Authors: C. Wurl, A. Alvermann, H. Fehske

Year

2016

Paper ID

43503

Status

Preprint

Abstract Read

~2 min

Abstract Words

120

Citations

N/A

Abstract

We study the classical dynamics of a membrane inside a cavity in the situation where this optomechanical system possesses a reflection symmetry. Symmetry breaking occurs through supercritical and subcritical pitchfork bifurcations of the static fixed point solutions. Both bifurcations can be observed through variation of the laser-cavity detuning, which gives rise to a boomerang-like fixed point pattern with hysteresis. The symmetry-breaking fixed points evolve into self-sustained oscillations when the laser intensity is increased. In addition to the analysis of the accompanying Hopf bifurcations we describe these oscillations at finite amplitudes with an ansatz that fully accounts for the frequency shift relative to the natural membrane frequency. We complete our study by following the route to chaos for the membrane dynamics.

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  • This paper contributes to the Open Quantum Systems & Decoherence research area in the Quantum Articles archive.
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  • We study the classical dynamics of a membrane inside a cavity in the situation where this optomechanical system possesses a reflection symmetry.

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