Study of all-fiber Mach-Zehnder configuration with mode transition phenomena in double cladding fiber

A. Srivastava, F. Esposito, S. Campopiano, A. Iadicicco
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Abstract

This work proposes an in-fiber Mach-Zehnder interferometer (MZI) device which is fabricated by embedding a short section of double cladding fiber (DCF) in between two standard fibers utilising the core-offset splicing approach. Moreover, the DCF has a W-shaped refractive index (RI) profile, where the outer cladding has RI higher than inner one and core. Consequently, by modifying the thickness of the outer cladding, the mode transition of cladding modes from outer to inner cladding can be induced, with the possibility to tune the sensitivity to surrounding refractive index. Specifically, the outer cladding diameter was decreased by means of chemical etching down to a diameter of 112 µm and a sensitivity of -200 nm/RIU was achieved in the range 1.33-1.39, with a 2.5 gain in comparison to unetched fiber. The proposed sensing device has considerable compactness, low manufacturing cost and simplicity, as well as high sensitivity for future applications in chemical and biosensing domain and other related fields.
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双包层光纤中带模式跃迁现象的全光纤Mach-Zehnder组态研究
本研究提出了一种光纤内Mach-Zehnder干涉仪(MZI)装置,该装置通过利用芯偏移拼接方法在两根标准光纤之间嵌入短段双包层光纤(DCF)来制造。此外,DCF具有w型折射率(RI)分布,其中外包层的RI高于内包层和核心。因此,通过改变外包层的厚度,可以诱导包层模式从外包层到内包层的模式转换,并有可能调整对周围折射率的灵敏度。具体来说,通过化学蚀刻将外包层直径减小到112 μ m,在1.33-1.39范围内实现了-200 nm/RIU的灵敏度,与未蚀刻的光纤相比,增益为2.5。该传感装置结构紧凑,制造成本低,结构简单,灵敏度高,可用于化学和生物传感等相关领域。
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