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High Sensitivity Refractive Index Sensor based on Large-angle Tilted Fiber Grating with Carbon Nanotube Deposition

机译:基于大角度倾斜光纤光栅的高灵敏度折射率传感器,碳纳米管沉积

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This paper presents a highly sensitive ambient refractive index (RI) sensor based on 81° tilted fiber grating (81°-TFG) structure UV-inscribed in standard telecom fiber (62.5μm cladding radius) with carbon nanotube (CNT) overlay deposition. The sensing mechanism is based on the ability of CNT to induce change in transmitted optical power and the high sensitivity of 81°-TFG to ambient refractive index. The thin CNT film with high refractive index enhances the cladding modes of the TFG, resulting in the significant interaction between the propagating light and the surrounding medium. Consequently, the surrounding RI change will induce not only the resonant wavelength shift but also the power intensity change of the attenuation band in the transmission spectrum. Result shows that the change in transmitted optical power produces a corresponding linear reduction in intensity with increment in RI values. The sample shows high sensitivities of ~207.38nm/RIU, ~241.79nm/RIU at RI range 1.344-1.374 and ~113.09nm/RIU, ~144.40nm/RIU at RI range 1.374-1.392 (for X-pol and Y-pol respectively). It also shows power intensity sensitivity of ~ 65.728dBm/RIU and ~ 45.898 (for X-pol and Y-pol respectively). The low thermal sensitivity property of the 81°-TFG offers reduction in thermal cross-sensitivity and enhances specificity of the sensor.
机译:本文介绍了基于81°倾斜的光纤光栅(81°-TFG)结构UV-in-Stand Contres inaotube(CNT)覆盖沉积的标准电信纤维(62.5μm包层半径)的高敏感的环境折射率(RI)传感器。感测机理基于CNT引起传输光功率变化和81°-TFG的高灵敏度至环境折射率的能力。具有高折射率的薄CNT膜增强了TFG的包层模式,导致传播光与周围介质之间的显着相互作用。因此,周围的RI变化不仅会诱导谐振波长偏移,而且诱导传输频谱中衰减带的功率强度变化。结果表明,传输光功率的变化产生强度的相应线性降低,其增量在RI值中增加。该样品显示高敏感性〜207.38nm / riu,ri范围为1.344-1.374和〜113.09nm / Riu,〜144.40nm / Riu,Ri范围为1.374-1.392(用于X-Pol和Y-Pol分别)。它还显示电力强度灵敏度〜65.728dBm / Riu和〜45.898(分别用于X-POL和Y-POL)。 81°-TFG的低热敏性质提供了耐热交叉敏感性的降低,并增强了传感器的特异性。

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