Photonic crystal fiber tip sensor for precision temperature sensing

I. Jung, B. Park, J. Provine, R. Howe, O. Solgaard
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引用次数: 11

Abstract

We demonstrate that monolithic 2-dimensional photonic crystals (PCs) confined to the facet, or tip, of single-mode optical fibers can be designed as highly sensitive temperature sensors. Monolithic 2-D photonic-crystals are fabricated on silicon wafers and subsequently released and micro-assembled onto the tip of optical fibers. The PC's reflection spectrum is modulated by the temperature of the sensor and its environment and shows sensitivity comparable to Fiber Bragg Gratings (FBGs). In contrast to FBGs, the compact sensing element is localized at the tip of the fiber and the active sensor element is a disk of 10 mum diameter and 480 nm thickness. The sensor system is made of robust, high-temperature dielectric materials and therefore has the potential to be used for many applications including measurements in harsh environments.
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用于精密温度传感的光子晶体光纤尖端传感器
我们证明,单片二维光子晶体(PCs)限制在单模光纤的面,或尖端,可以设计成高灵敏度的温度传感器。单片二维光子晶体是在硅晶片上制造的,随后释放并微组装到光纤的尖端。PC的反射光谱由传感器的温度及其环境调制,并显示出与光纤布拉格光栅(fbg)相当的灵敏度。与fbg相比,紧凑传感元件位于光纤的尖端,有源传感元件是直径为10微米,厚度为480纳米的圆盘。该传感器系统由坚固的高温介质材料制成,因此具有用于许多应用的潜力,包括在恶劣环境下的测量。
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