Performance analysis for all-fiber polarization transformer with specific spun rate profile

Performance analysis for all-fiber polarization transformer with specific spun rate profile
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具有特定旋转速率分布的全光纤偏振变压器的性能分析

DOI:
10.1016/j.optcom.2017.01.014
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发表时间:
2017-06
影响因子:
2.4
通讯作者:
Wang Lihui
Wang Lihui
中科院分区:
物理与天体物理3区
文献类型:
--
作者:
Shi Zhidong;Bi Shengnan;Ji Minning;Wang Lihui

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全光纤偏振变压器(AFPT)是一种长度可变的双折射光纤,它可以像波片一样变换偏振态。通过刻意的矩阵变换,用一种改进的方法推导出了具有特定自转速度函数的AFPT耦合模方程的完整解析解。并推导出了从零自转速率端到最大自转速率端的传输本征模的解析表达式。此外,当线偏振光作为单本征模输入时,计算了输出端准圆偏振光的椭圆度与光纤结构参数的函数关系。根据实际需要,对AFPT的等效延迟性进行了评价,给出了纤维长度与最大纺丝速度之间的临界约束条件。
All-fiber polarization transformer (AFPT) is a length of variably spun birefringence fiber which can transform the state of polarization as a wave plate. A set of complete analytic solutions for the coupled-mode equation of AFPT with a specific function of spun rate is deduced by a modified method through deliberate matrix transformation. And the analytical expressions of the transmitting eigen-modes from the zero spun-rate end to the maximum spun-rate end are derived. Moreover, when the linear polarized light is input as single eigen-mode, the ellipticity of quasi-circular polarization light at the output end is calculated as function of the fiber structure parameters. The equivalent retardation of AFPT is evaluated and the critical constraints between the fiber length and the maximum spun rate are illustrated according to practical requirements.
DOI: --
发表时间: 1998
期刊: --
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