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An investigation of numerical aperture of air-core photonic bandgap fiber 被引量:1
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作者 XU Xiao Bin GAO Fu Yu +2 位作者 ZHANG Zhi Hao JIN Jing song ning fang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第2期352-356,共5页
Air-core photonic bandgap fiber(PBF)is the perfect choice of the next-generation fiber optical gyroscope(FOG),with excellent temperature,electromagnetism and radiation adaptability.Numerical aperture is an important o... Air-core photonic bandgap fiber(PBF)is the perfect choice of the next-generation fiber optical gyroscope(FOG),with excellent temperature,electromagnetism and radiation adaptability.Numerical aperture is an important optical parameter of PBF for application in FOG.The PBF’s maximum theoretical numerical aperture(NAmax)is calculated and compared with the far-field numerical aperture(NAeff)through experiments.The result indicates that the relationship between NAmax and NAeff has much stronger dependence on wavelength than that of the conventional fiber,and they get close at wavelengths near the middle of the photonic bandgap with the error less than 5%.Furthermore,photonic bandgap fiber optical gyroscope(PBFOG)with no fusion splicing points is proposed,and the optimization method and results of the PBF’s structure parameters for application in PBFOG are given from the aspect of numerical aperture. 展开更多
关键词 fiber optical gyroscope (FOG) photonic bandgap fiber (PBF) numerical aperture
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