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Design of Si-photonics-based logic gates using micro-ring resonator structures

机译:利用微环谐振器结构设计基于Si光子学的逻辑门

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Using the knowledge that any gate can be built through different arrangements of micro-ring resonators, this paper proposes the all-optical design of XOR and XNOR logic gates. The gates structure thus consists of micro-ring resonators (MRR) paired with a constant source of light (COS). MRRs in these designs are utilized as modulators by tuning their resonant wavelengths. In this way, under no external disturbances, the rings are uncoupled by default. The proposed devices are CMOS-compatible meaning that they can be fabricated using the existing technologies. Also, to reduce the fabrication complexity of the proposed devices, thermo-optic modulation is employed as primary light modulating technique. The logic gates are tested at 25 kpbs. Device parameters are provided as well for manufacturing purposes. The study concludes with suggestions on design improvements and potential application of the optical gates.
机译:利用可以通过微环谐振器的不同布置来构建任何门的知识,本文提出了XOR和XNOR逻辑门的全光学设计。因此,栅极结构由与恒定光源(COS)配对的微环谐振器(MRR)组成。这些设计中的MRR通过调整其谐振波长而用作调制器。这样,在没有外部干扰的情况下,默认情况下会断开环的耦合。拟议的器件是CMOS兼容的,这意味着可以使用现有技术来制造它们。而且,为了降低所提出的装置的制造复杂性,采用热光调制作为主要的光调制技术。逻辑门的测试速率为25 kpbs。还提供了用于制造目的的设备参数。该研究最后提出了对光闸的设计改进和潜在应用的建议。

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