基于微阵列核的改性光子晶体光纤在化学传感中的应用

S. Asaduzzaman, K. Ahmed, Md. Faizul Huq Arif, M. Morshed
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引用次数: 19

摘要

本研究提出了一种简单的改性PCF (M-PCF)作为化学传感器,其核心和包层都是微结构的。利用全矢量有限元法研究了M-PCF在大波长范围内的不同导频特性。通过改变内层和外层的节距和孔径,对相对灵敏度、折射率和约束损耗进行了数值计算和比较。在波长1.33μm处,相对灵敏度提高了1.45倍,约束损耗也减小了。该材料结构简单,具有较低的制造工艺和成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of microarray-core based modified photonic crystal fiber in chemical sensing
This study presents a simple type of modified PCF (M-PCF) as a chemical sensor where both core and cladding are micro-structured. Different guiding properties of proposed M-PCF have been investigated for a wide range of wavelength using full vectorial finite element method (FEM). By varying pitch and hole diameter both of inner and outer layers, the relative sensitivity, refractive index and confinement loss are numerically examined and compared. At the wavelength 1.33μm it is observed that the relative sensitivity is improved 1.45 times and confinement loss is also reduced than prior work. Fabrication process and cost will be low of proposed M-PCF because of its structural simplicity.
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