Integrated micro Michelson fiber interferometer with spatial mode beating characteristics for directional discrimination

N. Chen, Yung-Hsiang Chang
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Abstract

We demonstrate integrated micro Michelson interferometer with a sphered-end hollow-core fiber attached against the singlemode fiber to serve as a sensing head for discriminating the moving direction of external object. The splicing point between the singlemode fiber and hollow-core fiber can convert the core mode into cladding modes which will be further projected to the external object by a fiber lens. The reflected cladding modes can be captured by fiber lens to interfere with the back-reflected core mode generated at splicing point to produce interferences with spatial mode beating characteristics. This spatial mode beating comes along with multiple foci outside the fiber lens where one of the cladding modes serves as a moving reference for others. The moving direction can thus be discriminated by monitoring the power variations of two neighboring wavelengths at the bilateral side of the wavelength beating node at around 1486 nm or 1504 nm wavelength.
集成微迈克尔逊光纤干涉仪,具有空间模式跳动特性,用于方向识别
我们演示了一种集成式微迈克尔逊干涉仪,其球形端空心光纤连接在单模光纤上,作为识别外部物体运动方向的传感头。单模光纤和空心芯光纤之间的接合点可以将芯模转换为包层模式,包层模式通过光纤透镜进一步投射到外界物体上。通过光纤透镜捕获反射包层模式,与剪接点产生的后反射芯模发生干涉,产生具有空间模跳动特征的干涉。这种空间模式跳动伴随着光纤透镜外的多个焦点,其中一个包层模式作为其他包层模式的移动参考。因此,可以通过监测波长跳动节点两侧在1486 nm或1504 nm波长附近的两个相邻波长的功率变化来判别移动方向。
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