Venkatachalam Srisaran, Zhou Xin
CNRS, Université Lille, Centrale Lille, Université Polytechnique Hauts-de-France, UMR8520, IEMN, Av. Henri Poincare, Villeneuve d'Ascq F-59650, France.
Nanotechnology. 2023 Mar 13;34(21). doi: 10.1088/1361-6528/acbeb0.
In this work, we present the effects of stochastic force generated by white noise on the nonlinear dynamics of a circular silicon nitride membrane. By tuning the membrane to the Duffing nonlinear region, detected signals switching between low- and high-amplitudes have been observed. They are generated by noise-assisted random jumps between bistable states at room temperature and exhibit high sensitivity to the driving frequency. Through artificially heating different mechanical vibration modes by external input of white noise, the switching rate exhibits exponential dependence on the effective temperature and follows with Kramer's law. Furthermore, both the measured switching rate and activation energy exhibit sensitivity to the width of the hysteresis window in nonlinear response and the driving force, which is in qualitative agreement with the theoretical descriptions. Besides, white noise-induced hysteresis window squeezing and bifurcation point shifting have also been observed, which are attributed to the stochastic force modulation of the spring constant of the membrane. These studies are carried out in an all-electric operating scheme at room temperature, paving the way for the exploration of probability distribution-based functional elements that can be massively integrated on-chip.
在这项工作中,我们展示了白噪声产生的随机力对圆形氮化硅膜非线性动力学的影响。通过将膜调谐到杜芬非线性区域,观察到检测信号在低振幅和高振幅之间切换。它们是由室温下双稳态之间的噪声辅助随机跳跃产生的,并且对驱动频率表现出高灵敏度。通过外部输入白噪声人为加热不同的机械振动模式,切换速率呈现出对有效温度的指数依赖性,并遵循克莱默定律。此外,测量的切换速率和激活能对非线性响应中的滞后窗口宽度和驱动力都表现出敏感性,这与理论描述在定性上是一致的。此外,还观察到白噪声引起的滞后窗口压缩和分岔点移动,这归因于膜弹簧常数的随机力调制。这些研究是在室温下的全电操作方案中进行的,为探索可大规模集成在芯片上的基于概率分布的功能元件铺平了道路。