基于聚合物的高非线性低弯曲损耗PCF:一种新的建模方法

N. Muduli
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引用次数: 2

摘要

研究了椭圆率对具有克尔非线性气孔的六方螺旋热塑性聚合物基PCF的低弯曲损耗、高非线性、宽带高双折射和低约束损耗的影响。在较宽的波长范围内(不同值的椭圆率)和1.55 μm的工作波长下,分别对上述特性进行了模拟。通过优化椭圆气孔的排列和直径,所设计的螺旋PCF在0.5 ~ 1.75 μm波长范围内具有低弯曲损耗、高非线性依赖于模场面积(与模场面积一样小,非线性增大)、高双折射和非零色散特性。这些结果似乎在光通信中最有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polymer Based PCF with High Nonlinearity and Low Bend Loss: A NewModeling
The effect of ellipticity ratio on low bend loss, high nonlinearity, wideband high birefringence and low confinement loss in a hexagonal spiral thermoplastic polymer based PCF having air holes with Kerr nonlinearity is investigated. Moreover, the above all property are simulated initially with wide range of wavelength (for different value ellipticity ratio) and secondly with ellipticity ratio at an operating wavelength of 1.55 μm. Through the optimization of arrangement and diameter of elliptical air holes, the designed spiral PCF offers low bend loss, high nonlinearity depends on mode field area (As small as mode field area, increase the nonlinearity), high birefringence and nonzero dispersion for X/Y polarization within the wavelength range of 0.5 to 1.75 μm. These results seem to be most useful in optical communication.
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