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Efficient Approaches for Designing Quantum Costs of Various Reversible Gates

机译:设计各种可逆门的量子成本的高效方法

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Over the last few decades, research in reversible logic has increasingly become very popular and it is gaining greater momentum in the present word. Reversible logic has started finding concert applications in quantum computing, optical computing, nano-technology based system, low-power CMOS design, VLSI design. The principal objective of this work is to argue for quantum implementation of various reversible logic gates by using C-NOT, Controlled-V and Controlled-V~+ gates. The present work presents parallel adder/subtractor (with over flow detection), as well as Binary coded decimal adder (BCD) in terms of number of gates, garbage outputs, quantum cost, delay and hardware complexity compared to existing design.
机译:在过去的几十年中,可逆逻辑的研究越来越受欢迎,并且在当前词中获得了更大的势头。 可逆逻辑已开始在量子计算,光学计算,纳米技术的系统,低功耗CMOS设计,VLSI设计中找到音乐会应用。 这项工作的主要目标是通过使用C-NOT,受控-V和控制-V +栅极来争论各种可逆逻辑门的量子实施。 与现有设计相比,本工作呈现并行加法器/减法器(具有过流量检测),以及二进制编码的小数加法器(BCD),换乘器,垃圾输出,量子成本,延迟和硬件复杂性。

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