Simulation of universal optical logic gates under energy sharing collisions of Manakov solitons and fulfillment of practical optical logic criteria

M. Vijayajayanthi, T. Kanna, M. Lakshmanan
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Abstract

The universal optical logic gates, namely, nand and nor gates, have been theoretically simulated by employing the energy sharing collision of bright optical solitons in the Manakov system, governing pulse propagation in a highly birefringent fiber. Further, we also realize the two-input optical logic gates, such as and, or, xor, xnor, for completeness of our scheme. Interestingly, our idea behind the simulation naturally satisfies all the criteria for practical optical logic, which in turn displays the strength and versatility of our theoretical simulation of universal optical logic gates. Hence, our approach paves the way for the experimentalists to create a new avenue in this direction if the energy sharing collisions of Manakov solitons are experimentally realized in the future.
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Manakov孤子能量共享碰撞下通用光逻辑门的仿真及实用光逻辑准则的实现
利用Manakov系统中明亮光孤子的能量共享碰撞来控制脉冲在高双折射光纤中的传播,从理论上模拟了通用光逻辑门,即nand门和nor门。此外,我们还实现了双输入光逻辑门,如和,或,xor, xnor,以完成我们的方案。有趣的是,我们的模拟背后的想法自然地满足了实际光逻辑的所有标准,这反过来又显示了我们的通用光逻辑门理论模拟的强度和通用性。因此,我们的方法为实验家在未来实验中实现Manakov孤子的能量共享碰撞铺平了道路。
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