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Designing low power and high contrast ratio all-optical NOT logic gate for using in optical integrated circuits

机译:设计用于光集成电路的低功耗和高对比度全光非逻辑门

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In this paper, a new design of all-optical NOT logic gate is proposed. In this structure, a photonic crystal nano-resonator and three waveguides are used. The nano-resonator is formed by removing two dielectric rods. The contrast ratio for the proposed NOT logic gate is 20.75dB. The maximum response time and the rate of sending information equal to 0.466ps and 2.145Tbit/s, respectively. In addition, very low power consumption, small size, and simple design are the main features of this logic gate. These features allow the designed structure to be used in all-optical switches. To accomplish this, two types of logic gates placement alongside each other in the optical integrated circuits are proposed and investigated. In both types, the logic gates are tested for single use and simultaneous use, and the accuracy of the performance and effect of each on the other is measured. The results clearly show that the two logic gates, along with each other, have acceptable performance and can easily be used in the optical integrated circuit.
机译:本文提出了一种全光非逻辑门的新设计。在这种结构中,使用了光子晶体纳米谐振器和三个波导。通过去除两个电介质棒来形成纳米谐振器。建议的非逻辑门的对比度为20.75dB。最大响应时间和信息发送速率分别等于0.466ps和2.145Tbit / s。此外,该逻辑门的主要特点是功耗极低,体积小,设计简单。这些功能使设计的结构可用于全光开关。为此,提出并研究了两种类型的逻辑门在光集成电路中彼此并排放置。在这两种类型中,都对逻辑门进行了一次使用和同时使用的测试,并测量了彼此的性能和效果的准确性。结果清楚地表明,两个逻辑门彼此之间具有可接受的性能,并且可以轻松地用于光学集成电路中。

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