首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >A novel frequency encoded all optical CNOT gate exploiting difference frequency generation and implementation of fast binary adders using frequency encoding and nonlinear dielectric films
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A novel frequency encoded all optical CNOT gate exploiting difference frequency generation and implementation of fast binary adders using frequency encoding and nonlinear dielectric films

机译:一种新颖的频率编码全光CNOT门,利用差分频率生成和使用频率编码和非线性介电膜的快速二进制加法器实现

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摘要

Optics has an important role in logic implementation and computation is established in two and half decades by many researchers. Recently frequency encoding technique is established. This technique does not suffer from intensity dependent loss problems like other schemes. Amorphous dielectric thin films with reflecting edges can also be used for logic realization and has very fast response speed. It also does not use any semiconductor device and simple to construct. In this communication the authors have proposed all optical CNOT gate using frequency encoded difference frequency generation exploiting nonlinear response of some material and implementation of binary adders by CNOT gate and dielectric thin film AND gate.
机译:光学在逻辑实现中起着重要作用,许多研究人员在二十五年的时间里建立了光学。最近建立了频率编码技术。该技术不会像其他方案一样遭受与强度有关的损耗问题。具有反射边缘的非晶电介质薄膜也可以用于逻辑实现,并且具有非常快的响应速度。它还不使用任何半导体器件并且构造简单。在这种通信中,作者提出了利用频率编码差分频率生成的所有光学CNOT栅极,其中利用了某些材料的非线性响应,并通过CNOT栅极和电介质薄膜AND栅极实现了二进制加法器。

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