中国激光, 2016, 43 (10): 1006002, 网络出版: 2016-10-12  

多模阶跃光纤纤芯传导模式的快速求解 下载: 732次

Fast Solution of Fiber Core Conduction Mode in Multimode Step-Index Fiber
史尘 1,*王小林 1,2,3陆启生 1,2,3
作者单位
1 国防科学技术大学光电科学与工程学院, 湖南 长沙 410073
2 高能激光技术湖南省重点实验室, 湖南 长沙 410073
3 大功率光纤激光协同创新中心, 湖南 长沙 410073
摘要
在多模光纤模式色散求解、光纤耦合模理论分析以及锥形光纤的模式演化等过程中,都涉及到多模阶跃光纤纤芯传导模式的特征方程的求解,计算量很大,从而直接影响整体的计算效率。分析了牛顿迭代法及其收敛速度的优势。求解弱导近似下的标量模式特征方程时,利用第一类贝塞尔函数的零点确定其解区间,再结合牛顿迭代法在区间内快速求解特征方程。将此求解过程引入矢量模式特征方程求解中,并结合上下边界截弦的方式快速判断特征方程尾根与首根的存在性问题。将此方法的计算结果与OptiFiber软件的计算结果作对比,画出光纤的模式色散曲线,验证了该快速求解方法的正确性。
Abstract
The solution of characteristic equation of multimode step-index fiber core conduction mode is involved in many cases, such as the mode dispersion solution of multimode fiber, the theory analysis of optical fiber coupled-mode, and the mode evolution of tapered fiber. The large computation capability of this solution affects the whole computational efficiency directly. The Newton-Raphson iteration method is analyzed and it has obvious advantage in convergence speed. In the solving process of scalar mode characteristic equation under the weak-guidance approximation, we use the zero point of the type I Bessel function to determine the interval of roots, then solve the characteristic equation quickly in the interval by combining the Newton-Raphson iteration method. The solving process is introduced in the solving of vector mode characteristic equation, and its first root and last root are determined quickly by combining the way of upper and lower boundary chord intercept. Finally, we compare the calculation results of our method with the results of OptiFiber software, draw the mode dispersion curve of fiber, and verify the accuracy of our method.
参考文献

[1] 段云锋, 黄榜才, 张鹏, 等. 高能量脉冲光纤激光器的研究进展及其应用[J]. 光通信技术, 2006(8): 55-57.

[2] 赵鑫. 高功率脉冲激光技术及其在工业领域的应用[J]. 装备制造技术, 2013(4): 141-143.

    Zhao Xin. High-power pulsed laser technology and its application in the field of industrial[J]. Equipment Manufacturing Technology, 2013(4): 141-143.

[3] 付兴虎, 谢海洋, 杨传庆, 等. 基于包层模谐振的三包层石英特种光纤温度传感特性[J]. 物理学报, 2016, 65(2): 024211.

    Fu Xinghu, Xie Haiyang, Yang Chuanqing, et al. Research on the temperature sensing characteristics of triple cladding quartz specialty fiber based on cladding mode resonance[J]. Acta Physica Sinica, 2016, 65(2): 024211.

[4] Hocker G B, Burns W K. Mode dispersion in diffused channel waveguides by the effective index method[J]. Applied Optics, 1977, 16(1): 113-118.

[5] Mohammed W S, Mehta A, Johnson E G. Wavelength tunable fiber lens based on multimode interference[J]. Journal of Lightwave Technology, 2004, 22(2): 469-477.

[6] Huang L J, Guo S F, Leng J Y, et al. Real-time mode decomposition for few-mode fiber based on numerical method[J]. Optics Express, 2015, 23(4): 4620-4629.

[7] Soh D B S, Nilsson J, Baek S, et al. Modal power decomposition of beam intensity profiles into linearly polarized modes of multimode optical fibers[J]. Journal of the Optical Society of America A, 2004, 21(7): 1241-1250.

[8] 杨春, 夏志超. 大芯径大数值孔径阶跃光纤传导模特征方程求解[J]. 光学学报, 2004, 24(7): 957-960.

    Yang Chun, Xia Zhichao. Propagation constant solution for large core and high numerical aperture step-index multimode optical fiber[J]. Acta Optica Sinica, 2004, 24(7): 957-960.

[9] 李丽君, 来永政, 曹茂永, 等. 光纤纤芯及包层模有效折射率计算及仿真[J]. 物理学报, 2013, 62(14): 140201.

    Li Lijun, Lai Yongzheng, Cao Maoyong, et al. Calculation and simulation of optical fiber core and cladding mode effective refractive index[J]. Acta Physica Sinica, 2013, 62(14): 140201.

[10] Tyrtyshnikov E E. A brief introduction to numerical analysis[M]. New York: Springer Science + Business Media, 2012.

[11] 刘德明, 向清, 黄德修. 光纤光学[M]. 北京: 国防工业出版社, 1995.

[12] Snyder A W, Love J D. Optical waveguide theory[M]. New York: Springer Science + Business Media, 2012.

[13] 廖延彪, 金慧明. 光纤光学[M]. 北京: 清华大学出版社, 1992.

    Liao Yanbiao, Jin Huiming. Fiber optics[M]. Beijing: Tsinghua University Press, 1992.

史尘, 王小林, 陆启生. 多模阶跃光纤纤芯传导模式的快速求解[J]. 中国激光, 2016, 43(10): 1006002. Shi Chen, Wang Xiaolin, Lu Qisheng. Fast Solution of Fiber Core Conduction Mode in Multimode Step-Index Fiber[J]. Chinese Journal of Lasers, 2016, 43(10): 1006002.

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