Effect of external stress on propagation properties of hexagonal and octagonal PCF

M. Khatun, M. S. Islam
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引用次数: 1

Abstract

External stress and design parameters of photonic crystal fiber (PCF) play significant role in controlling the propagation properties during drawing process. In this paper, we have analyzed and simulated the effect of external stress and design parameters on PCF's propagation properties for two kinds of air-hole arrangement using finite element method. The effective indices for both arrangements are observed in FEMLAB environment by varying the number of air hole rings and then birefringence, effective area and polarization mode dispersion (PMD) are calculated. It is found that under same values of external stress and various design parameter, the effect on effective area, birefringence and PMD is higher in hexagonal air-hole arranged PCF than octagonal.
外应力对六边形和八边形PCF传播性能的影响
在拉伸过程中,外部应力和设计参数对光子晶体光纤的传输特性有重要影响。本文采用有限元法分析和模拟了两种气孔布置方式下,外加应力和设计参数对PCF传播特性的影响。在FEMLAB环境下,通过改变气孔环的数量来观察两种布置的有效折射率,然后计算双折射、有效面积和偏振模色散(PMD)。研究发现,在相同的外部应力值和不同的设计参数下,六角形空气孔排列聚苯乙烯的有效面积、双折射率和PMD的影响大于八角形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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