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Highly sensitive refractive index sensor based on Bragg grating in metallic-hole microstructured optical fiber

机译:基于布拉格光栅的金属孔微结构光纤中的高灵敏度折射率传感器

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We present a theoretical comparative study of a highly sensitive Bragg grating sensor written in a microstructured optical fiber with bare and metallic voids or holes. Based on the full vector effective index method and the coupled mode theory our simulations show that the device is maximum sensitive for small metal thickness showing nearly double sensitive at 10 nm metal thickness as compared to that for the bare hole. This highest sensitivity is comparable to the maximum sensitivity reported for the pure surface plasmon polariton based Bragg gratin sensors and, unlike the later, the modes are easy to excite for the present sensor. Owing to the reflective mode operation the device is ideally suited for highly sensitive, remote deep sea and oil well sensing applications.
机译:我们对高灵敏度的布拉格光栅传感器进行的理论比较研究,该传感器以微结构化光纤编写,带有裸露的和金属的空隙或孔。基于全矢量有效折射率法和耦合模式理论,我们的仿真表明,该器件对小厚度的金属具有最大灵敏度,与裸孔相比,在10 nm的金属厚度下几乎具有两倍的灵敏性。这种最高的灵敏度可与基于纯表面等离激元极化的布拉格光栅传感器所报告的最大灵敏度相媲美,并且与后一种情况不同,本传感器的模式很容易激发。由于采用反射模式,该设备非常适合高灵敏度,偏远的深海和油井传感应用。

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