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A scheme for the development of a trinary logic unit (TLU) using polarization-based optical switches

机译:一种使用基于偏振的光学开关开发杂志(TLU)的方案

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Frequency-encoded optical processors based on multivalued logic (MVL) will play a significant role in future all-optical networks. In this work, basic optical logic gates are designed using a modified trinary system, exploiting the switching action of semiconductor optical amplifiers (SOAs) based on the principle of the nonlinear rotation of the polarization of a probe beam in the presence of a pump beam. A control unit capable of performing OR, AND, and XOR logic operations depending on the frequency of the control signal is then developed. Finally, a trinary logic unit is designed to execute 27 different logic operations. The feasibility of these proposals is confirmed by simulation results. In this approach, each trinary bit, i.e., trit, is represented by a unique frequency, which in turn helps to address the noise margin problem that arises in intensity-encoded MVL systems. This scheme can therefore play an important role in errorless optical computing and processing.
机译:基于多值逻辑(MVL)的频率编码光学处理器将在未来的全光网络中发挥重要作用。在这项工作中,基本光学逻辑门使用改进的杂交系统设计,基于在存在泵浦光束存在下基于探针光束的极化的非线性旋转原理来利用半导体光放大器(SOA)的切换动作。然后开发了能够执行或,和和XOR逻辑操作的控制单元,其根据控制信号的频率进行。最后,历程逻辑单元旨在执行27个不同的逻辑操作。这些提案的可行性通过模拟结果证实。在这种方法中,每个横向位,即氚是由唯一频率表示的,这反过来有助于解决强度编码的MVL系统中出现的噪声保证金问题。因此,该方案可以在错误的光学计算和处理中发挥重要作用。

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