佘雨来

  2024-03-11   点击:[10]


[1] Yu-Lai S, De-Jian Z, Xiao-Yong C, et al. Bend-resistant low bending loss and large modearea single-mode fiber with low NA[J]. Optical Fiber Technology, 2019, 51: 101-106.

[2] Yu-Lai S, De-Jian Z, Xiao-Yong C, et al. Study on ultralow bending loss of bend-insensitivesingle mode optical fiber[J]. Optical Fiber Technology, 2019, 50: 225-232.

[3] 佘雨来,周德俭,陈小勇.超低损耗孔助光纤弯曲损耗性能优化设计[J].红外与激光工程,2019,48(09):185-191.

[4] 佘雨来,周德俭,陈小勇,杨旭,涂闪,赖华俊.层压工艺对埋入光纤传输性能影响分析[J].光子学,2020,49(03):41-48.

[5] 佘雨来,周德俭,陈小勇.挠性光互联弯曲损耗研究[J].电子机械工程,2018,34(04):60-64.

[6]She Y, Zhang W, Tu S, et al. Large mode area single mode photonic crystal fiber with ultra-low bending loss[J]. Optik, 2021, 229: 165556.

[7]Zehua X, Yu-lai S, Wen-tao Z, et al. Ultralow bending-loss micro-structured fiber with large-mode-area[J]. Optik, 2022, 251: 168440.

[8]Xiao-Yong C, Ze-Hua X, Yu-Lai S*, et al. Bend-resistant multiring fiber with large mode areaand single-mode operation[J]. Optical Engineering, 2022, 61(9): 096111.

[9] Yu-lai S, Wen-tao Z, Guoling L, et al. Optimal design of large mode area all-solid-fiber using a gray relational optimization technique[J]. Optik, 2021, 242: 167188.

[10] 毛久兵,郭元兴,佘雨来*.挠性光电印制电路板工艺光纤特性仿真与测试[J].红外与激光工程,2023,52(04):270-280.

[11] 杨松,佘雨来*,杜浩等.大模场抗弯曲全固态光纤的结构设计[J].红外与激光工程,2023,52(03):290-299.

[12] Yu-Lai S, Tian-Sheng L, Wen-Tao Z, et al. Multi-rings modulation and hole-assisted fiber under single-mode operation[J]. Optics Communications, 2024, 552: 130026.

[13]Yang S, Zhang W, She Y, et al. A Large Mode Area Parabolic-Profile Core Fiber with Modified Segmented in Cladding[J].Photonics. MDPI, 2022, 9(10): 783.

[14] She Y, Ling T, Xu M, et al. Dual D-shaped Photonic Crystal Fiber Sensor for Three-Parameter Sensing based on Surface Plasmon Resonance[J]. IEEE Sensors Journal, 2023.

[15] She Y, Ling T, Zhang Y, et al. Surface plasmon resonance sensor based on a D-shaped hollow microstructured fiber with bimetallic film[J]. JOSA B, 2024, 41(1): 90-97.


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