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Modified Hamming function weighted waveguide structure for the broadband and minimized mismatched optical couplers

机译:改进的汉明函数加权波导结构,适用于宽带和最小化的失配光耦合器

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We numerically investigate a new function modified from Hamming function to apply in weighting the waveguide structure of a mismatched optical coupler with the characteristics of low crosstalk, short length, and broad C+L-band. The full factorial design and beam propagation method are being used to seek the optimal structure parameters of coupling waveguide. This modified Hamming weighting function (M-HWF) is proved to have the superior performances to Hamming weighting function (HWF) in several ways. In theoretical computation, the M-HWF and HWF waveguides have the coupling lengths of 11 mm and 16 mm, respectively at crosstalk of −40 dB and operating wavelength of 1.57 µm. After the numerical design of waveguide structure parameters, the M-HWF also obtain a shorter coupling length of 4.50 mm than coupling length of 5.90 mm of HWF at crosstalk of −40 dB and within the C+L-band (1.53∼1.61 µm). The M-HWF waveguide with the shortest coupling length of 4.5 mm can even reach a broader bandwidth between 1.50 and 1.70 µm.
机译:我们用数值方法研究了一种从汉明函数修改而来的新函数,该函数适用于加权具有低串扰,短长度和宽C + L波段特性的不匹配光耦合器的波导结构。采用全因子设计和光束传播方法来寻找耦合波导的最佳结构参数。事实证明,这种改进的汉明加权函数(M-HWF)在几种方面具有优于汉明加权函数(HWF)的性能。在理论计算中,M-HWF和HWF波导在-40 dB的串扰和1.57 µm的工作波长下的耦合长度分别为11 mm和16 mm。在对波导结构参数进行数值设计之后,M-HWF在-40 dB的串扰和C + L频带内(1.53〜1.61 µm)内的耦合长度也比HWF的耦合长度5.90 mm短,为4.50 mm。 。最短耦合长度为4.5 mm的M-HWF波导甚至可以达到1.50至1.70 µm的较宽带宽。

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