首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >In-fiber modal interferometer based on dual-concentric-core photonic crystal fiber and its strain, temperature and refractive index characteristics
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In-fiber modal interferometer based on dual-concentric-core photonic crystal fiber and its strain, temperature and refractive index characteristics

机译:基于双同心芯光子晶体光纤的光纤模态干涉仪及其应变,温度和折射率特性

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摘要

An in-fiber modal interferometer is demonstrated by splicing a section of homemade dual-concentric-core photonic crystal fiber (DCCPCF) and two segments of single-mode fibers (SMFs) with collapsing the air holes in the splice regions. By analyzing the transmission spectra and the spatial frequency spectra of the interferometers, it's observed that the main interfering modes are the high-order ring modes, which are different from the previously reported interferometers using the single-, few- or multi-mode fibers. The influences of the lengths of DCCPCF and the first collapsed region on the interferometers were investigated experimentally. The strain, temperature and refractive index characteristics of the interferometer were analyzed.
机译:通过将一段自制的双同心芯光子晶体光纤(DCCPCF)和两段单模光纤(SMF)拼接在一起,并在拼接区域中将气孔塌陷,来演示光纤内模态干涉仪。通过分析干涉仪的透射光谱和空间频谱,可以观察到主要的干扰模式是高阶环形模式,与先前报道的使用单模,少模或多模光纤的干涉仪不同。实验研究了DCCPCF长度和第一个塌陷区的长度对干涉仪的影响。分析了干涉仪的应变,温度和折射率特性。

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