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Apparatus and method for realizing all-optical nor logic device using gain saturation characteristics of a semiconductor optical amplifier

机译:利用半导体光放大器的增益饱和特性实现全光或逻辑器件的设备和方法

摘要

The present invention relates to an apparatus and a method for realizing all-optical NOR logic device using the gain saturation characteristics of a semiconductor optical amplifier (SOA). More particularly, the invention relates to a 10 Gbit/s all-optical NOR logic device among all-optical logic devices, in which a signal transmitted from a given point of an optical circuit such as an optical computing circuit is used as a pump signal and a probe signal. The method for realizing an all-optical NOR logic device using the gain saturation characteristics of the SOA according to the present invention comprises the steps of: utilizing A+B signal which couples together an input signal pattern A (1100) and an input signal pattern B (0110) as a pump signal (1110); utilizing a probe signal (1111) by generating a clock signal out of said input signal pattern A (1100); and obtaining a Boolean equation {overscore (A+B)} by making said probe signal and said pump signal incident upon the SOA simultaneously from the opposite direction. The all-optical logic device according to the present invention has a simple construction since it is realized through the XGM (Cross Gain Modulation) method which utilizes the gain saturation characteristics. Also, it is expected that the method employed in the present invention could be used for realizing other all-optical logic circuits and devices. Key Words 10 Gbit/s, All-optical NOR logic device (10 Gbit/s All-optical NOR logic device), Semiconductor Optical Amplifiers, Gain Saturation
机译:本发明涉及一种利用半导体光放大器(SOA)的增益饱和特性来实现全光NOR逻辑器件的设备和方法。更具体地,本发明涉及全光逻辑器件中的10Gbit / s全光NOR逻辑器件,其中将从诸如光学计算电路之类的光学电路的给定点发送的信号用作泵浦信号。和探测信号。根据本发明的利用SOA的增益饱和特性实现全光NOR逻辑器件的方法包括以下步骤:利用将输入信号模式A(1100)和输入信号模式耦合在一起的A + B信号。 B(0110)作为泵送信号(1110);通过从所述输入信号模式A(1100)中产生时钟信号来利用探测信号(1111);通过使所述探测信号和所述泵浦信号同时从相反方向入射到SOA上,获得布尔方程{overscore(A + B)}。根据本发明的全光逻辑器件具有简单的结构,因为它是通过利用增益饱和特性的XGM(交叉增益调制)方法实现的。而且,期望本发明中采用的方法可以用于实现其他全光逻辑电路和器件。关键词10 Gbit / s,全光NOR逻辑器件(10 Gbit / s全光NOR逻辑器件),半导体光放大器,增益饱和

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