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A Novel Planar Waveguide Super-Multiple-Channel Optical Power Splitter

机译:新型平面波导超多通道光功率分配器

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摘要

In this paper, we have proposed a novel planar waveguide optical-power-splitter design with a large number of splitting channels. The design uses the wavefront lateral interference in light propagation in a slab waveguide, with its core properly adjusted in different areas for achieving different effective indices for the required phase delays. Therefore, the whole structure is equivalent to a nonblocking all-pass filter, hence, suffers a very small insertion loss. Another unique advantage of this structure lies in its weak length dependence on the number of splitting channels; although its lateral size has to be scaled up as the channel number increases, as opposed to conventional splitters with both of its length and lateral size scaled up with increasing channel numbers. Our numerical simulation results show that, for a 1-to-256 channel splitter within a working wavelength band from 1530 to 1570 nm, the insertion loss is below 1.3 dB. The channel nonuniformity is less than 5 dB within the same band. The required size is within 2.5 mm by 10 mm on the silicon-on-insulator platform. The proposed structure can readily be extended to other material platforms, such as the silica-based planar lightwave circuit or semiconductors. Its fabrication process is fully compatible with standard clean-room technologies, such as photolithography and etching, without any complicated and/or costly approach involved.
机译:在本文中,我们提出了一种具有大量分离通道的新型平面波导光功率分离器设计。该设计在平板波导中的光传播中使用波前横向干扰,其纤芯在不同区域进行了适当调整,以实现所需相位延迟所需的不同有效折射率。因此,整个结构等效于无阻塞全通滤波器,因此插入损耗非常小。这种结构的另一个独特优势在于其对分割通道数量的依赖性很弱。尽管其传统尺寸必须随着通道数量的增加而按比例增加,但与传统的分流器相反,其长度和横向尺寸都随通道数量的增加而按比例增加。我们的数值模拟结果表明,对于工作波长范围为1530至1570 nm的1-to-256通道分路器,插入损耗低于1.3 dB。同一频段内的信道不均匀度小于5 dB。在绝缘体上硅平台上,所需尺寸在2.5mm x 10mm之内。所提出的结构可以容易地扩展到其他材料平台,例如基于二氧化硅的平面光波电路或半导体。它的制造过程与标准的洁净室技术(例如光刻和蚀刻)完全兼容,而无需涉及任何复杂和/或昂贵的方法。

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