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Fiber-optic ferrule-top nanomechanical resonator with multilayer graphene film

机译:多层石墨烯薄膜的光纤插芯顶纳米机械谐振器

摘要

Compact ferrule-top nanomechanical resonators with multilayer graphene (MLG) diaphragms as vibrating elements are demonstrated. The resonators comprise a suspended MLG film supported by a ceramic ferrule with a bore diameter of similar to 125 mu m. The mechanical resonance of the graphene film is excited and detected by an all-fiber optical interrogation system. Based on a beam-shape graphene mechanical resonator, a force sensitivity of similar to 3.8 fN/Hz(1/2) was theoretically predicted. The integration of nanomechanical graphene film with optical fiber simplifies the excitation and interrogation of the resonator and would allow the development of practical fiber-optic sensors for force, mass, and pressure measurements.
机译:紧凑的套圈式纳米机械谐振器具有多层石墨烯(MLG)振动膜。谐振器包括由陶瓷套圈支撑的悬浮MLG膜,其孔径近似于125μm。石墨烯薄膜的机械共振被全光纤光学查询系统激发和检测。基于梁形石墨烯机械谐振器,理论上预测了类似于3.8 fN / Hz(1/2)的力灵敏度。纳米机械石墨烯薄膜与光纤的集成简化了谐振器的激发和询问,并将允许开发用于力,质量和压力测量的实用光纤传感器。

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