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Optical fiber photoacoustic gas sensor with graphene nano-mechanical resonator as the acoustic detector

机译:以石墨烯纳米机械谐振器为声检测器的光纤光声气体传感器

摘要

We report an all-optical fiber photoacoustic gas sensor with a graphene nano-mechanical resonator as the acoustic detector. The acoustic detector is a Fabry-Perot interferometer formed by attaching a 100-nm-thick, 2.5-mm-diameter multilayer graphene diaphragm to a hollow cavity at the end of a single-mode optical fiber. By operating at one of the mechanical resonances of the diaphragm, the sensitivity for acoustic detection is enhanced and a noise equivalent minimum detectable pressure of 2.11 μPa/Hz1/2 at 10.1 kHz is demonstrated. Detection of acetylene gas is demonstrated with a distributed feedback semiconductor laser tuned to the P(9) absorption line of acetylene and a lower detection limit of 119.8 parts-per-billion (ppb) is achieved with 123.9-mW pump power. Theoretical analysis shows that by increasing the Q-factor of the resonator, which may be achieved by operating at low gas pressures, ppb level gas detection is possible. The all-fiber photoacoustic gas sensor is immune to electromagnetic interference, safe in flammable and explosive environment, and would be ideally suited for remote, space-limited applications and for multipoint detection in a multiplexed fiber optic sensor network.
机译:我们报告了一种全光学纤维光声气体传感器,其中石墨烯纳米机械谐振器作为声检测器。声波检测器是一种Fabry-Perot干涉仪,它是通过将100 nm厚,2.5 mm直径的多层石墨烯膜片附着到单模光纤末端的空心腔中而形成的。通过在膜片的机械共振之一下运行,可以提高声学检测的灵敏度,并证明在10.1 kHz时的噪声等效最小可检测压力为2.11μPa/ Hz1 / 2。用调谐到乙炔的P(9)吸收线的分布式反馈半导体激光器演示了乙炔气体的检测,并以123.9-mW的泵浦功率实现了119.8十亿分之一(ppb)的下限。理论分析表明,通过增加谐振器的Q因子(可以通过在低气压下运行来实现),可以检测ppb级的气体。全光纤光声气体传感器不受电磁干扰,在易燃易爆环境中安全,非常适合远程,空间受限的应用以及多路复用光纤传感器网络中的多点检测。

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