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首页> 外文期刊>Journal of Lightwave Technology >Novel Wavelength Multiplexer Using (N + 1) × (N + 1) Arrayed Waveguide Grating and Polarization-Combiner-Rotator on SOI Platform
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Novel Wavelength Multiplexer Using (N + 1) × (N + 1) Arrayed Waveguide Grating and Polarization-Combiner-Rotator on SOI Platform

机译:新颖的波长多路复用器使用(n + 1)×(n + 1)阵列波导光栅和SOI平台上的偏振组合器 - 旋转器

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摘要

We propose an ultra-compact novel wavelength multiplexer employing a (N + 1) x (N + 1) arrayed waveguide grating (AWG) and a polarization-combiner-rotator (PCR) on the SOI platform, to realize a multiplexing for 2N wavelengths with a spacing of Delta lambda. The (N + 1) x (N + 1) AWG works at a bidirectional way to provide two groups of N x 1 wavelength multiplexing with each group having a channel spacing of 2x Delta lambda, and the central wavelengths of all input channels in one group have a wavelength shift of Delta lambda with respect to those in the other group. The double channel spacing results in a significant decrease on the footprint of the (N + 1) x (N + 1) AWG-based multiplexer compared with a conventional 2N x 1 AWG multiplexer with the same wavelength spacing Delta lambda. Due to the fact that a single mode fiber is insensitive to the polarization of input light, if we consider short reach datacom applications such as 100/400 GbE, the two separate multiplexing outputs of the (N + 1) x (N + 1) AWG can be combined as one output with one half wavelengths working at TE polarization and the other at TM polarization by employing a low loss and broadband PCR. In the experiment, we demonstrate a 16 x 200 GHz multiplexer based on a 9 x 9 AWG. The experimental results show that the on-chip loss of the fabricated multiplexer is 2.7 dB and the loss uniformity is 0.5 dB. The 1-dB and 3-dB bandwidths are >0.56 nm (i.e., 35% of the wavelength spacing) and >1.1 nm (i.e., 69% of the wavelength spacing), respectively. They can also be further increased by decreasing the gap between adjacent input waveguides at the interfaces of star couplers of the designed AWG without inducing an excess loss. The proposed multiplexer has great potential for application to future super large capacity (> Tb/s) data transmission systems.
机译:我们提出了一种采用(N + 1)X(N + 1)阵列波导光栅(AWG)和SOI平台上的偏振组合器 - 旋转器(PCR)的超紧凑型新颖的波长多路复用器,以实现2N波长的多路复用具有三角洲λ的间距。 (n + 1)x(n + 1)awg以双向方式工作,以提供两组n x1波长复用,每个组具有2x delta lambda的信道间隔,以及所有输入通道的中心波长对于其他组中的那些,组具有Delta Lambda的波长偏移。与具有相同波长间距Delta Lambda的传统的2N×1 AWG多路复用器相比,双通道间距导致(n + 1)x(n + 1)AWG的多路复用器的占地面积显着降低。由于单模光纤对输入光的极化不敏感,如果我们考虑短程到达Datacom应用,例如100/400 GBE,则(n + 1)x(n + 1)的两个单独的复用输出AWG可以作为一个输出组合为一个输出,通过采用低损耗和宽带PCR,在TE偏振下工作的一个半波长,另一个在TM偏振中。在实验中,我们基于9 x 9 AWG展示了16 x 200 GHz多路复用器。实验结果表明,制造的多路复用器的片上损失为2.7dB,损耗均匀性为0.5 dB。 1-DB和3-DB带宽分别> 0.56nm(即35%的波长间距)和> 1.1nm(即69%的波长间距)。通过减少设计AWG的星形耦合器的界面在不诱导过量损失的情况下,还可以通过减少相邻输入波导之间的间隙进一步增加它们。所提出的多路复用器具有巨大的应用于未来超大容量(> TB / S)数据传输系统。

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