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用于传感应用的渗透光子晶体光纤。

Infiltrated Photonic Crystal Fibers for Sensing Applications.

机构信息

GDAF-UC3M, Displays and Photonics Applications Group, Electronic Technology Department, Carlos III University of Madrid, Leganés, 28911 Madrid, Spain.

Consiglio Nazionale delle Ricerche, Istituto per la Microelettronica e Microsistemi, 00133 Rome, Italy.

出版信息

Sensors (Basel). 2018 Dec 4;18(12):4263. doi: 10.3390/s18124263.

Abstract

Photonic crystal fibers (PCFs) are a special class of optical fibers with a periodic arrangement of microstructured holes located in the fiber's cladding. Light confinement is achieved by means of either index-guiding, or the photonic bandgap effect in a low-index core. Ever since PCFs were first demonstrated in 1995, their special characteristics, such as potentially high birefringence, very small or high nonlinearity, low propagation losses, and controllable dispersion parameters, have rendered them unique for many applications, such as sensors, high-power pulse transmission, and biomedical studies. When the holes of PCFs are filled with solids, liquids or gases, unprecedented opportunities for applications emerge. These include, but are not limited in, supercontinuum generation, propulsion of atoms through a hollow fiber core, fiber-loaded Bose⁻Einstein condensates, as well as enhanced sensing and measurement devices. For this reason, infiltrated PCF have been the focus of intensive research in recent years. In this review, the fundamentals and fabrication of PCF infiltrated with different materials are discussed. In addition, potential applications of infiltrated PCF sensors are reviewed, identifying the challenges and limitations to scale up and commercialize this novel technology.

摘要

光子晶体光纤(PCF)是一类特殊的光纤,其纤芯包层中存在周期性排列的微结构孔。通过折射率引导或低折射率芯中的光子带隙效应来实现光限制。自 1995 年首次演示以来,PCF 的特殊特性,如潜在的高双折射、非常小或高非线性、低传播损耗和可控制的色散参数,使其在许多应用中具有独特的优势,如传感器、高功率脉冲传输和生物医学研究。当 PCF 的孔被固体、液体或气体填充时,就会出现前所未有的应用机会。这些机会包括但不限于超连续谱产生、原子通过空心光纤芯的推进、纤维负载的玻色-爱因斯坦凝聚体,以及增强的传感和测量设备。出于这个原因,近年来,填充 PCF 一直是研究的重点。在本文中,讨论了填充不同材料的 PCF 的基本原理和制造方法。此外,还回顾了填充 PCF 传感器的潜在应用,确定了将这项新技术规模化和商业化的挑战和限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac0e/6308598/833ac59b8b3c/sensors-18-04263-g001.jpg

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