Department of Physics, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.
William Mong Institute of Nano Science and Technology, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.
Nat Commun. 2018 Aug 13;9(1):3241. doi: 10.1038/s41467-018-05246-w.
Self-sustained vibrations in systems ranging from lasers to clocks to biological systems are often associated with the coefficient of linear friction, which relates the friction force to the velocity, becoming negative. The runaway of the vibration amplitude is prevented by positive nonlinear friction that increases rapidly with the amplitude. Here we use a modulated electromechanical resonator to show that nonlinear friction can be made negative and sufficiently strong to overcome positive linear friction at large vibration amplitudes. The experiment involves applying a drive that simultaneously excites two phonons of the studied mode and a phonon of a faster decaying high-frequency mode. We study generic features of the oscillator dynamics with negative nonlinear friction. Remarkably, self-sustained vibrations of the oscillator require activation in this case. When, in addition, a resonant force is applied, a branch of large-amplitude forced vibrations can emerge, isolated from the branch of the ordinary small-amplitude response.
从激光器到时钟再到生物系统等各种系统中的自维持振动通常与线性摩擦系数有关,该系数将摩擦力与速度相关联,使其变为负值。随着振幅的迅速增加,正的非线性摩擦力会阻止振动幅度的失控。在这里,我们使用调制的机电谐振器来表明,非线性摩擦力可以变为负值并且足够强,可以在大振幅下克服正的线性摩擦力。该实验涉及施加一个同时激励所研究模式的两个声子和一个高频模式的声子的驱动力。我们研究了具有负非线性摩擦力的振荡器动力学的一般特征。值得注意的是,在这种情况下,振荡器的自维持振动需要激活。此外,当施加共振力时,大振幅受迫振动的分支可以从普通小振幅响应的分支中出现,并且彼此隔离。