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Inverse design of efficient and compact 1 x N wavelength demultiplexer

机译:逆设计高效且紧凑的1×N波长多路分解器

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摘要

In this paper, we propose efficient and compact 2D T-junction 1 x N in-plane-incidence wavelength demul-tiplexers by using recently developed objective-first inverse design algorithm. Ultra-high device performance was achieved for the specific designs of 1 x 2, 1 x 4, and 1 x 6 wavelength (de)multiplexers with small footprints 2.80 mu m x 2.80 mu m, 4.60 mu m x 2.80 mu m, 6.95 mu m x 2.80 mu m, respectively. We used two approaches to binarize - epsilon threshold and binarization-cost - to obtain silicon wavelength demultiplexer considering fabrication constraints. For instance, the transmission efficiency of binarization-cost 1 x 2 demultiplexer was -0.30 dB for 1.31 mu m and -0.54 dB at 1.55 mu m while crosstalks at the operating wavelengths are negligibly small, i.e., -17.80 and -15.29 dB, respectively. Moreover, for the binarization-cost 1x4 demultiplexer, the transmission efficiency values were approximately -1.90 dB at 1.31,1.39,1.47, and 1.55 mu m as the crosstalk was approximately -13 dB. Furthermore, the objective-first algorithm was used to employ our demultiplexers as multiplexers, which means the ports that were once used as inputs in demultiplexers are designed to be used as outputs. We envision that the devices are compact, reliable, and T-shaped that is useful for optical communication systems. These rudimentary results are also relevant to the burgeoning field of nanophotonics.
机译:在本文中,我们通过使用最近开发的目标第一逆设计算法提出了高效且紧凑的2D T型接头1×n内面入射波长淋巴转平器。为1 x 2,1 x 4和1 x 6波长(de)多路复用器的特定设计实现了超高器件性能2.80 mu mx 2.80 mu m,4.60 mu mx 2.80 mu m,6.95 mu mx 2.80 mu m分别。我们使用了两种方法 - ε-epsilon阈值和二值化 - 成本 - 考虑制造限制,获得硅波长多路分解器。例如,二值化 - 成本1×2多路分解器的传输效率为-0.30dB,对于1.55μm和-0.54dB,在1.55μm,而操作波长的串扰分别是忽略的小,即-17.80和-15.29dB 。此外,对于二值化成本1x4多路分解器,传输效率值约为-1.90dB,为1.31,1.39,1.47,并且串扰约为-13 dB1.55μm。此外,目标第一算法用于使用我们的解复用器作为多路复用器,这意味着曾经用作多路分解器中的输入的端口被设计为输出。我们设想设备紧凑,可靠,并且对于光学通信系统是有用的。这些基本的结果也与纳米洋管的蓬勃发展领域有关。

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