2 x 2 Compact Silicon Waveguide-Based Optical Logic Functions at 1.55 μm
A. Kotb and K. E. Zoiros
刊名Photonics
2023
卷号10期号:4页码:14
DOI10.3390/photonics10040403
英文摘要Compact waveguide crossing is a fundamental component of optoelectronic fusion chip solutions due to its orders-of-magnitude smaller footprint than that of conventional photonic integrated circuits. In this paper, we suggest 2 x 2 compact silicon-on-silica waveguides that can implement all of the fundamental Boolean logic functions, including XOR, AND, OR, NOT, NOR, XNOR, and NAND, operated at 1.55 mu m. Three input waveguides, one output waveguide, and a design area compose the proposed waveguide. The execution of the specified logic gates relies on the constructive and destructive interferences produced by the phase variations between the input beams. The contrast ratio (CR) is employed as a performance metric to assess how well these logic functions operate. In comparison to other reported designs, the proposed waveguide achieves higher CRs at a high speed of 120 Gb/s.
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语种英语
内容类型期刊论文
源URL[http://ir.ciomp.ac.cn/handle/181722/67584]  
专题中国科学院长春光学精密机械与物理研究所
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A. Kotb and K. E. Zoiros. 2 x 2 Compact Silicon Waveguide-Based Optical Logic Functions at 1.55 μm[J]. Photonics,2023,10(4):14.
APA A. Kotb and K. E. Zoiros.(2023).2 x 2 Compact Silicon Waveguide-Based Optical Logic Functions at 1.55 μm.Photonics,10(4),14.
MLA A. Kotb and K. E. Zoiros."2 x 2 Compact Silicon Waveguide-Based Optical Logic Functions at 1.55 μm".Photonics 10.4(2023):14.
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