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Nonlinearity induced synchronization enhancement in mechanical oscillators

机译:机械振荡器中非线性引起的同步增强

摘要

An autonomous oscillator synchronizes to an external harmonic force only when the forcing frequency lies within a certain interval, known as the synchronization range, around the oscillator's natural frequency. Under ordinary conditions, the width of the synchronization range decreases when the oscillation amplitude grows, which constrains synchronized motion of micro- and nano-mechanical resonators to narrow frequency and amplitude bounds. The present invention shows that nonlinearity in the oscillator can be exploited to manifest a regime where the synchronization range increases with an increasing oscillation amplitude. The present invention shows that nonlinearities in specific configurations of oscillator systems, as described herein, are the key determinants of the effect. The present invention presents a new configuration and operation regime that enhances the synchronization of micro- and nano-mechanical oscillators by capitalizing on their intrinsic nonlinear dynamics.
机译:仅当强制频率位于振荡器的固有频率附近的某个间隔(称为同步范围)内时,自治振荡器才会与外部谐波力进行同步。在通常情况下,当振荡幅度增大时,同步范围的宽度会减小,这会将微机械和纳米机械谐振器的同步运动限制在较窄的频率和幅度范围内。本发明表明,可以利用振荡器中的非线性来表现出一种状态,其中同步范围随着振荡幅度的增加而增加。本发明表明,如本文所述,振荡器系统的特定配置中的非线性是影响的关键决定因素。本发明提出了一种新的配置和操作方案,其通过利用其固有的非线性动力学来增强微机械和纳米机械振荡器的同步。

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