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Nonlinear dynamics and chaos in an optomechanical beam

机译:光机械光束中的非线性动力学和混沌

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摘要

Optical nonlinearities, such as thermo-optic mechanisms and free-carrier dispersion, are often considered unwelcome effects in silicon-based resonators and, more specifically, optomechanical cavities, since they affect, for instance, the relative detuning between an optical resonance and the excitation laser. Here, we exploit these nonlinearities and their intercoupling with the mechanical degrees of freedom of a silicon optomechanical nanobeam to unveil a rich set of fundamentally different complex dynamics. By smoothly changing the parameters of the excitation laser we demonstrate accurate control to activate two- and four-dimensional limit cycles, a period-doubling route and a six-dimensional chaos. In addition, by scanning the laser parameters in opposite senses we demonstrate bistability and hysteresis between two- and four-dimensional limit cycles, between different coherent mechanical states and between four-dimensional limit cycles and chaos. Our findings open new routes towards exploiting silicon-based optomechanical photonic crystals as a versatile building block to be used in neurocomputational networks and for chaos-based applications.
机译:诸如热光机制和自由载流子色散之类的光学非线性通常被认为是基于硅的谐振器,尤其是光机械腔中不受欢迎的效应,因为它们会影响(例如)光学谐振和激发之间的相对失谐激光。在这里,我们利用这些非线性以及它们与硅光机械纳米束的机械自由度的相互耦合,揭示了一系列根本不同的复杂动力学。通过平稳地更改激发激光器的参数,我们演示了激活二维和二维极限循环,周期倍增路径和六维混沌的精确控制。另外,通过以相反的方向扫描激光参数,我们证明了二维和四维极限环之间,不同相干机械状态之间以及四维极限环和混沌之间的双稳性和滞后性。我们的发现为开发基于硅的光机电光子晶体开辟了一条新途径,该晶体可作为一种通用构建块用于神经计算网络和基于混沌的应用中。

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