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A Novel Mach-Zehnder Interferometer Using Eccentric-Core Fiber Design for Optical Coherence Tomography

机译:使用偏心光纤设计的光学相干层析成像的新型马赫曾德尔干涉仪

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摘要

A novel Mach-Zehnder interferometer using eccentric-core fiber (ECF) design for optical coherence tomography (OCT) is proposed and demonstrated. Instead of the commercial single-mode fiber (SMF), the ECF is used as one interference arm of the implementation. Because of the offset location of the eccentric core, it is sensitive to directional bending and the optical path difference (OPD) of two interference arms can be adjusted with high precision. The birefringence of ECF is calculated and experimentally measured, which demonstrates the polarization sensitivity of the ECF proposed in the paper is similar to that of SMF. Such a structure can replace the reference optical delay line to form an all-fiber passive device. A mirror is used as a sample for analyzing the ECF bending responses of the system. Besides, four pieces of overlapping glass slides as sample are experimentally measured as well.
机译:提出并论证了一种新颖的采用偏心光纤(ECF)设计的Mach-Zehnder干涉仪,用于光学相干断层扫描(OCT)。代替商用单模光纤(SMF),ECF被用作实现的一个干扰臂。由于偏心芯的偏移位置,它对方向弯曲敏感,并且可以高精度调整两个干涉臂的光程差(OPD)。计算并通过实验测量了ECF的双折射,这证明了本文提出的ECF的偏振灵敏度与SMF相似。这样的结构可以代替参考光延迟线以形成全光纤无源器件。镜子用作分析系统ECF弯曲响应的样本。此外,还通过实验测量了四块重叠的载玻片作为样品。

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