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Graphene diaphragm-based extrinsic Fabry-Perot interferometer for low frequency acoustic sensing

机译:基于石墨烯膜片的外部法布里-珀罗干涉仪,用于低频声学传感

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A low frequency fiber acoustic sensor based on the transduction of 10nm thickness graphene diaphragm has been experimentally demonstrated. The ultra thin graphene diaphragm is used as a reflecting surface to form an extrinsic Fabry-Perot interferometer. The diameter of the graphene diaphragm is selected as 125 pm, thus the resonant frequency of 25958Hz is obtained. The sensitivity of the acoustic pressure can be as high as 43.5dB re 1 V/Pa@60Hz. Moreover, the minimum detectable acoustic pressure of 171.6pPa/Hz1/2@60Hz is achieved. The compact structure, simple manufacture and low cost fiber acoustic sensor can be realized.
机译:实验证明了一种基于10nm厚度石墨烯膜片转导的低频光纤传感器。超薄石墨烯膜片用作反射表面,以形成非本征法布里-珀罗干涉仪。将石墨烯膜片的直径选择为125pm,从而获得25958Hz的共振频率。 1 V / Pa @ 60Hz时,声压的灵敏度可高达43.5dB。此外,实现了最小可检测声压171.6pPa / Hz 1/2 @ 60Hz。可以实现结构紧凑,制造简单和低成本的光纤传感器。

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