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GHz nanomechanical resonator in an ultraclean suspended graphene p-n junction

机译:GHz纳米力学谐振器在超级悬挂的石墨烯P-N连接处

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We demonstrate high-frequency mechanical resonators in ballistic graphene p-n junctions. Fully suspended graphene devices with two bottom gates exhibit ballistic bipolar behavior after current annealing. We determine the graphene mass density and built-in tension for different current annealing steps by comparing the measured mechanical resonant response to a simplified membrane model. In a graphene membrane with high built-in tension, but still of macroscopic size with dimensions 3 x 1 m(2), a record resonance frequency of 1.17 GHz is observed after the final current annealing step. We further compare the resonance response measured in the unipolar with the one in the bipolar regime. Remarkably, the resonant signals are strongly enhanced in the bipolar regime.
机译:我们展示了弹道石墨烯P-N连接中的高频机械谐振器。 当电流退火后,具有两个底部门的完全悬浮的石墨烯设备表现出弹道双极行为。 我们通过将测得的机械谐振响应与简化的膜模型进行比较,确定了不同电流退火步骤的石墨烯质量密度和内置张力。 在具有较高内置张力的石墨烯膜中,但仍具有3 x 1 m(2)尺寸的宏观尺寸,在最终电流退火步骤之后,观察到记录的共振频率为1.17 GHz。 我们进一步比较了单极中测量的共振响应与双极性方案中的共振响应。 值得注意的是,在双极状态下,共振信号强烈增强。

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