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Characteristic of two cascaded M-Z interferometers based on spherical-shape structures

机译:基于球形结构的两个级联M-Z干涉仪的特性

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Characteristic of two cascaded Mach-Zehnder interferometers based on spherical-shape structures is investigated. When the light in the fiber core is excited into high-order cladding mode, part of the light can propagate along the fiber cladding for a long distance. By cascading two identical interferometers formed by dual spherical-shape structures, it proves that the high-order cladding modes are almost exhausted when they propagated about 50cm along the cladding layer, and they nearly have no influence in the transmission spectrum when they propagate more that 60cm. At the same time, by changing the length and dropping the refractive index liquid between the two cascaded interferometers, it demonstrates that the relative higher cladding mode has lower refractive index and it leaks very fast, so it will propagate a shorter distance, and on the contrary, the relative lower cladding mode has higher refractive index and it leaks slowly, so it will propagates a longer distance.
机译:研究了两种基于球形结构的级联马赫曾德尔干涉仪的特性。当光纤纤芯中的光被激发到高阶包层模式时,部分光会沿着光纤包层传播很长的距离。通过级联由两个球形结构形成的两个相同的干涉仪,证明高阶包层模沿包层传播约50cm时几乎耗尽,而当它们传播更多时,它们对传输谱几乎没有影响。 60厘米同时,通过改变长度并降低两个级联干涉仪之间的折射率液体,表明相对较高的包层模式具有较低的折射率并且泄漏非常快,因此它将传播更短的距离,并且在相反,相对较低的包层模式具有较高的折射率,并且泄漏缓慢,因此它将传播更长的距离。

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