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Fiber in-line Mach-Zehnder interferometer constructed by selective infiltration of two air holes in photonic crystal fiber

机译:通过选择性渗透光子晶体光纤中的两个气孔构造的光纤在线马赫曾德尔干涉仪

摘要

A fiber in-line Mach-Zehnder interferometer is fabricated through selective infiltrating of two adjacent air holes of the innermost layer in the solid core photonic crystal fiber, assisted by femtosecond laser micromachining. The liquid infiltrated has higher refractive index than that of the background silica, and, hence, the two rods created can support a guide mode with lower effective refractive index than that of silica. The interference is produced by the fiber fundamental mode and the guide mode. The free spectral range (FSR) of the interferometer is found to be dependent on the photonic crystal fiber length, and a large FSR corresponds to a short photonic crystal fiber length. Such an interferometer device is robust and exhibits extremely high temperature sensitivity (?7.3 nm/?XC for the photonic crystal fiber length of 3.4 cm) and flexible operation capability.
机译:通过在飞秒激光微加工的辅助下选择性渗透固体芯光子晶体光纤中最内层的两个相邻气孔,来制造光纤在线马赫曾德尔干涉仪。渗透的液体具有比背景二氧化硅更高的折射率,因此,所产生的两个棒可以以比二氧化硅更低的有效折射率来支撑引导模式。干涉是由光纤基本模式和引导模式产生的。已发现干涉仪的自由光谱范围(FSR)取决于光子晶体光纤的长度,而较大的FSR对应于较短的光子晶体光纤的长度。这样的干涉仪装置是坚固的,并且表现出极高的温度灵敏度(对于3.4cm的光子晶体光纤长度为〜7.3nm /ΔXC)和灵活的操作能力。

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