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Photothermal anemometer based on carbon nanotube-coated highly tilted fiber Bragg grating-assisted SPR sensor

机译:基于碳纳米管涂层高倾斜纤维布拉格光栅辅助SPR传感器的光热测量计

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An ultra-sensitive plasmonic fiber-optic photothermal anemometer is proposed and demonstrated. The device consists of a highly-tilted fiber Bragg grating (TFBG) sensor, which is coated with a gold layer exciting surface plasmon resonance (SPR) and then carbon nanotubes as the photothermal conversion element. The carbon nanotubes deposited on the sensor surface efficiently convert light from the heating laser, which is wavelength matched to the SPR signature, into heat. Air flow draws away the surface heat, thus inducing both a strong SPR wavelength shift and a changed of the power modulation. Using this approach, the proposed anemometer accounts for a dynamic range from 0.05 m/s to 0.65 m/s for wind speed measurement. In addition, the real-time monitoring of wind speed has been proved by measuring the intensity of the heating laser source. This device is a valuable candidate for a wide range of potential applications in both scientific research and industrial production, given its simplicity and robustness in structure.
机译:提出并证明了一种超敏等离子体光纤光热气仪。该装置包括高倾斜的光纤布拉格光栅(TFBG)传感器,其涂覆有金层励磁表面等离子体共振(SPR),然后碳纳米管作为光热转化元件。沉积在传感器表面上的碳纳米管有效地从加热激光器转换光,该加热激光器与SPR签名的波长匹配到热量中。空气流动吸引表面热量,从而诱导强速的SPR波长偏移和电力调制的变化。使用这种方法,所提出的风速计占动态范围为0.05米/秒至0.65米/秒,用于风速测量。此外,通过测量加热激光源的强度证明了风速的实时监测。鉴于其结构简单和鲁棒性,该装置是科学研究和工业生产中各种潜在应用的有价值的候选者。

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