Effect of Confined Heating on Down-tapered Fiber In-line Mach-Zehnder Interferometer

Noor Shafikah Md Rodzi, M. Mokhtar, Z. Yusoff
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Abstract

A systematic study on the characteristics of a Mach-Zehnder interferometer based on down-tapered fiber under confined heating is presented. The effect of confined heating to this structure is also compared to distributed heating over the entire structure. The study unveils, for the first time, that only change in peak power of the transmission spectrum is observed during confined heating at the taper waist, with a sensitivity of 0.0216 dB/°C at peak wavelength of 1558.28 nm, whereas the distributed heating over the entire structure causes wavelength shift with a sensitivity of 0.053 nm/°C for the observed peak at initial wavelength of 1557.476 nm. These distinct responses can be exploited as a new approach for spectrum shaping and multi-parameter sensing.
受限加热对下锥度光纤直列马赫-曾德尔干涉仪的影响
系统地研究了基于下锥光纤的马赫-曾德尔干涉仪在受限加热条件下的特性。该结构的局部加热效果也与整个结构的分布式加热效果进行了比较。研究首次揭示了在锥形腰处的受限加热只观察到透射光谱的峰值功率变化,峰值波长为1558.28 nm,灵敏度为0.0216 dB/°C,而在整个结构上的分布加热导致了1557.476 nm初始波长观测峰的波长位移,灵敏度为0.053 nm/°C。这些不同的响应可以作为频谱整形和多参数传感的新方法。
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