Optics and Precision Engineering, Volume. 32, Issue 6, 765(2024)

Modeling and experimental verification of backscatter secondary wave of photonic bandgap fiber

Xiaoyang WANG1...2, fei TENG1,2,*, Xiaobin XU3, Qiwei WANG1,2, Xiaona ZHOU1,2, Yanan TIAN1,2, Guanying MA1,2, and Yong LI12 |Show fewer author(s)
Author Affiliations
  • 1Beijing Institute of Control Engineering, Beijing0090, China
  • 2Science and Technology on Space Intelligent Control Laboratory, Beijing100190, China
  • 3School of Instrumentation and Optoelectronic Engineering, Beihang University, Beijing100191, China
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    Photonic bandgap fibers (PBFs) have advantages that traditional fiber cannot compare for its’ unique structural form, transmission medium, and light guide mechanism. PBFs is an ideal choice for fiber-optic gyroscope (FOG) in the future. However, the rough inner surface of PBFs’ core result in strong backscatter secondary wave, which results in additional non-reciprocal errors of photonic bandgap fiber-optic gyroscope (PBFOG). In order to quantitatively analyze the intensity of backscatter secondary wave of PBFs, a simple backscatter secondary wave model of PBFs was established based on electric dipole radiation theory. Power spectral density of inner surface of PBFs’ core was obtained by focused ion beam processing and atomic force microscopy, and the theoretical backscattering coefficient of PBF (HC-1550-02) can be calculated as 2.61×10-9/mm. The measured backscattering coefficient of PBF (HC-1550-02) is ~1.82×10-9/mm by optical frequency domain back-reflection scatter instrument, which primarily verify the correctness of backscatter secondary wave model, it lays a foundation for the research of suppression technology of backscatter secondary wave.

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    Xiaoyang WANG, fei TENG, Xiaobin XU, Qiwei WANG, Xiaona ZHOU, Yanan TIAN, Guanying MA, Yong LI. Modeling and experimental verification of backscatter secondary wave of photonic bandgap fiber[J]. Optics and Precision Engineering, 2024, 32(6): 765

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    Paper Information

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    Received: Sep. 6, 2023

    Accepted: --

    Published Online: Apr. 19, 2024

    The Author Email: TENG fei (tengfei0337@126.com)

    DOI:10.37188/OPE.20243206.0765

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