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Optimization Approaches for Designing Quantum Reversible Arithmetic Logic Unit

机译:量子可逆算术逻辑单元设计的优化方法

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摘要

Reversible logic is emerging as a promising alternative for applications in low-power design and quantum computation in recent years due to its ability to reduce power dissipation, which is an important research area in low power VLSI and ULSI designs. Many important contributions have been made in the literatures towards the reversible implementations of arithmetic and logical structures; however, there have not been many efforts directed towards efficient approaches for designing reversible Arithmetic Logic Unit (ALU). In this study, three efficient approaches are presented and their implementations in the design of reversible ALUs are demonstrated. Three new designs of reversible onedigit arithmetic logic unit for quantum arithmetic has been presented in this article. This paper provides explicit construction of reversible ALU effecting basic arithmetic operations with respect to the minimization of cost metrics. The architectures of the designs have been proposed in which each block is realized using elementary quantum logic gates. Then, reversible implementations of the proposed designs are analyzed and evaluated. The results demonstrate that the proposed designs are cost-effective compared with the existing counterparts. All the scales are in the NANO-metric area.
机译:由于可逆逻辑具有降低功耗的能力,近年来可逆逻辑正在成为低功耗设计和量子计算应用中的有希望的替代方法,这是低功耗VLSI和ULSI设计中的重要研究领域。文献中对算术和逻辑结构的可逆实现做出了许多重要的贡献。然而,没有很多努力致力于设计可逆算术逻辑单元(ALU)的有效方法。在这项研究中,提出了三种有效的方法,并展示了它们在可逆ALU设计中的实现。本文介绍了三种用于量子算术的可逆一位数算术逻辑单元的新设计。本文就成本指标的最小化提供了可逆ALU的显式构造,以实现基本算术运算。已经提出了设计的体系结构,其中使用基本量子逻辑门来实现每个块。然后,对提出的设计的可逆实现进行分析和评估。结果表明,与现有同类产品相比,拟议设计具有成本效益。所有比例尺都在NANO-metric区域中。

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