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Oscillation Stop as a Way to Determine Spectral Characteristics of a Graphene Resonator

机译:振荡停止是确定石墨烯谐振器频谱特性的一种方式

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A nanoresonator based on a graphene layer is investigated as an electromechanical oscillatory system. Mechanical oscillations are excited in it by a high-frequency alternating electric field. A nanoresonator is considered as a capacitor with kinematically varying capacity of the determined transverse deformation of the graphene layer as one of its plates. In the case of small ratios of energy accumulated in a capacitor to the amplitude of energy of mechanical oscillations and the time constant of the capacitor charge to the period of free oscillations, excitation of both common and parametric resonances is possible. It is shown that upon decreasing the external frequency lower than the half-frequency of free oscillations, the cessation of forced oscillations of the nanolayer is observed. This makes it possible to determine more reliably the variations in the intrinsic frequency of the nanoresonator upon deposition of a nanoparticle on it.
机译:研究了基于石墨烯层的纳米谐振器作为机电振动系统。高频交变电场在其中激发机械振荡。纳米谐振器被认为是具有确定的石墨烯层的横向变形的运动变化能力的电容器,作为其板之一。在电容器中累积的能量与机械振荡的能量幅度之比小,而电容器电荷的时间常数与自由振荡周期之比小的情况下,可能会激发共模谐振和参量谐振。结果表明,在将外部频率降低到低于自由振荡的一半频率时,观察到纳米层的强迫振荡停止了。这使得可以在纳米颗粒沉积在其上时更可靠地确定纳米谐振器的固有频率的变化。

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