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Multimode planar power splitter

机译:多模平面电源分配器

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摘要

A novel design for multimode 1 $MUL 2 and 1 $MUL 4 splitters is proposed. These devices differ from conventional 1 $MUL 2 and 1 $MUL 4 multimode interference splitters, as they do not rely on the interference between the excited modes propagating in the multimode region. Instead, their functionality is based on the principle that in an asymmetric multi-pronged splitter, the power in each excited mode can be directed unambiguously into one of the single- mode output channels with minimal cross-talk between channels. The geometry and relative position of the single- mode input waveguide of the 1 $MUL 2 and 1 $MUL 4 splitters is optimized to split the input power as evenly as possible between the two and four output channels, respectively, and to minimize the excess loss of the device. A simple low- power single-mode tap, based on the same principle, is also investigated and its excess loss and wavelength dependence determined.
机译:提出了一种新颖的Multimode 1 $ Mul 2和1 $ MUL 4分层的设计。这些设备与传统的1 $ MUL 2和1 $ MUL 4多模干扰分路器不同,因为它们不依赖于在多模区域中传播的激励模式之间的干扰。相反,它们的功能基于在非对称多管分离器中的原理,每个激励模式中的功率可以明确地指导到一个单模输出通道之一,其中信道之间的串扰最小。 1 $ MUL 2和1 $ MUL 4分数的单模输入波导的几何和相对位置经过优化,分别在两个和四个输出通道之间尽可能均匀地将输入电源分别均匀地分开,并最大限度地减少多余丢失设备。还研究了一个简单的低功耗单模抽头,也研究了其多余的损失和测定波长依赖性。

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