All-solid photonic bandgap fiber gratings

Yan-ge Liu, Zhi Wang, Boyan Tai, Jianbo Xu
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Abstract

In this paper, we review advances and our works in all-solid photonic bandgap fiber gratings. Especially, we report the fabrication and characterizations of long period fiber gratings and fiber Bragg grating arrays realized by forming longitudinal periodic index modulation in an low-loss all-solid PBGFs with high-index Ge-doped rods surrounded by a low index Be-doped ring lattice in the cladding. High order resonances between fundamental core mode and cladding LP01 supermodes are demonstrated and investigated in long period fiber gratings (LPFGs) inscribed in the all-solid photonic bandgap fiber. The fiber Bragg grating array has unusual transmission characteristics, such as large transmission bandwidth and different transmission spectra when launching light into different Ge-doped rods, which is very different from single fiber Bragg grating. These interesting spectral features are analyzed and interpreted.
全固体光子带隙光纤光栅
本文综述了全固体光子带隙光纤光栅的研究进展及相关工作。特别地,我们报道了长周期光纤光栅和光纤布拉格光栅阵列的制作和特性,这些光纤光栅是通过在低损耗全固体PBGFs中形成纵向周期折射率调制而实现的,高折射率掺ge棒在包层中被低折射率掺be的环形晶格包围。在全固体光子带隙光纤内嵌的长周期光纤光栅(LPFGs)中,研究了基芯模式与包层LP01超模之间的高阶共振。光纤布拉格光栅阵列具有不同寻常的传输特性,如在不同掺锗棒中发射光时传输带宽大,传输光谱不同,这与单光纤布拉格光栅有很大的不同。对这些有趣的光谱特征进行了分析和解释。
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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