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低损耗高双折射空芯反谐振太赫兹光纤

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光纤在太赫兹(terahertz,THz)波传输系统中起到重要的作用,但用以制备此波段光纤的透明材料比较匮乏,限制了 THz光纤的传输距离。为进一步提高THz光纤的传输特性,设计了一种高双折射空芯反谐振光纤,该光纤包层由圆形介质管和矩形介质层组成,光纤整体呈非对称结构。采用有限元法分析了光纤结构参数对其损耗和双折射的影响。结果表明:在0。475 THz处,双折射可达3。75×10-4,x和y偏振模损耗分别为0。077 dB/m和0。395 dB/m,在保证x偏振模损耗低于0。1 dB/m的前提下,实现了 THz光纤的高双折射特性。
Low-loss high-birefringence hollow-core anti-resonant Terahertz fiber
Optical fibers play an important role in terahertz(THz)wave transmission systems,however,there is a lack of transparent materials used to fabricate THz fibers,which limits the transmission distance of THz fibers.To further improve the transmission characteristics of THz fiber,a high birefringence hollow-core anti-resonant fiber is designed.The fiber cladding consists of a circular dielectric tube and a rectangular dielectric layer.The fiber structure is asymmetric.The finite element method is used to analyze the influence of fiber structure parameters on its loss and birefringence characteristics.The results show that the birefringence can reach 3.75 × 10-4,and the loss of x and y polarization modes are 0.077 dB/m and 0.395 dB/m at 0.475 THz,respectively.When the x polarization mode loss is ensured less than 0.1 dB/m,the high birefringence characteristics of THz fiber are achieved.

fiber opticshollow-core anti-resonant fiberhigh-birefringencelow-lossterahertz(THz)

姬丹丹、徐云豪、祝远锋、钟华、张鹏、张文杰

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江西师范大学物理与通信电子学院,江西南昌 330000

光纤光学 空芯反谐振光纤 高双折射 低损耗 太赫兹(THz)

2025

光电子·激光
天津理工大学 中国光学学会

光电子·激光

北大核心
影响因子:1.437
ISSN:1005-0086
年,卷(期):2025.36(2)