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Opto-thermally excited multimode parametric resonance in graphene membranes

机译:石墨烯膜中的光热激发多模参量共振

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摘要

In the field of nanomechanics, parametric excitations are of interest since they can greatly enhance sensing capabilities and eliminate cross-talk. Above a certain threshold of the parametric pump, the mechanical resonator can be brought into parametric resonance. Here we demonstrate parametric resonance of suspended single-layer graphene membranes by an efficient opto-thermal drive that modulates the intrinsic spring constant. With a large amplitude of the optical drive, a record number of 14 mechanical modes can be brought into parametric resonance by modulating a single parameter: the pre-tension. A detailed analysis of the parametric resonance allows us to study nonlinear dynamics and the loss tangent of graphene resonators. It is found that nonlinear damping, of the van der Pol type, is essential to describe the high amplitude parametric resonance response in atomically thin membranes.
机译:在纳米力学领域,参量激发非常重要,因为它们可以极大地增强传感能力并消除串扰。在参数泵的某个阈值之上,机械谐振器可以进入参数谐振。在这里,我们通过有效的光热驱动来演示悬浮的单层石墨烯膜的参数共振,该光热驱动可调节固有的弹簧常数。在光驱振幅较大的情况下,可以通过调制一个参数(预张力)使创纪录数量的14种机械模式进入参数共振。对参数谐振的详细分析使我们能够研究石墨烯谐振器的非线性动力学和损耗角正切。发现范德波尔类型的非线性阻尼对于描述原子薄膜中的高振幅参数共振响应至关重要。

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