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首页> 外文期刊>Journal of Optics >An all-optical scheme for implementing minority voting logic by frequency-encoding principle with semiconductor optical amplifier
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An all-optical scheme for implementing minority voting logic by frequency-encoding principle with semiconductor optical amplifier

机译:一种通过使用半导体光放大器的频率编码原理实现少数竞争逻辑的全光学方案

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摘要

Frequency encoding and decoding are found to be a very useful and potential technique in all-optical computing and data processing. Frequency of light wave generally remains unaltered after reflection, refraction or absorption. So the bit error problem can be avoided using frequency-encoding principle. Several frequency-encoded all-optical switches are proposed by many authors. In the present paper, we first time propose a new concept of implementing all-optical minority logic operations using semiconductor optical amplifier (SOA)-based switches. In minority logic, the minority input is selected among the odd number of inputs (here the no. of inputs is 3) at the output. Frequency-encoded all-optical AND and OR gates along with SOA-based switches are used to obtain the desired logic system.
机译:发现频率编码和解码是全光计算和数据处理中非常有用和潜在的技术。在反射,折射或吸收后,光波的频率通常保持不变。因此,可以使用频率编码原理来避免误差问题。许多作者提出了几种频率编码的全光开关。在本文中,我们首次提出了一种使用半导体光放大器(SOA)开关实现全光学少数逻辑操作的新概念。在少数逻辑中,在输出端中选择少数群体输入(此处的NO。输入为3)。使用基于SOA的交换机的频率编码的全光和和或栅极用于获得所需的逻辑系统。

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