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Cascadable All-optical XOR Gates for Optical Ciphertext and All-Optical Parity Calculations

机译:用于光学密文和全光奇偶奇偶校验计算的可级可式化的全光学XOR门

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Current research in optical computing and all-optical communications requires functionality that employs photons instead of electrons. Because of optical communications, there is a substantial research in developing elemental optical logic functions such as AND, OR, INVERT, and XOR. The latter logic function is one of the most important because of its versatility in encoding optical ciphertexts or decoding them, and also in designing optical macro-functions such as parity calculators. In this paper, we present an all-optical XOR gate that requires neither synchronization nor multi-wavelength control signals, and thus it is simpler to implement than other designs, it is cascadable and it is monolithically integrable. We simulate the all-optical XOR gate, we show its use in generating optical ciphertexts, and we demonstrate its cascadability towards an all-optical parallel parity generator.
机译:光学计算和全光通信的当前研究需要采用光子而不是电子的功能。由于光通信,在开发元素光学逻辑功能之类的基本光学逻辑功能之外存在大量研究,或者,反转和XOR。后一逻辑函数是最重要的,因为它在编码光学密文或解码它们时的多功能性,以及设计光学宏函数,例如奇偶校验器。在本文中,我们介绍了一种全光学XOR门,该门既不需要同步也不需要多波长控制信号,因此实现比其他设计更简单,它是可均衡的,它是单片可集成的。我们模拟了全光学XOR门,我们在生成光学密文时显示其使用,我们向所有光学并行平行奇偶校验发生器展示其级联。

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