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An efficient design of reversible ternary full-adder/full-subtractor with low quantum cost

机译:具有低量子成本的可逆三元全加法器/全减空剂的高效设计

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摘要

One of the major challenges of VLSI circuits is heat caused by energy loss. One of the successful solutions to this challenge is to design circuits in a reversible manner. Hence, the design of reversible circuits has attracted the attention of many researchers in the fields of low-power circuits design, DNA computing and quantum computing. Due to the benefits of ternary logic over binary logic such as reducing the complexity of interconnecting circuits, decreasing the occupied surface and reducing the number of quantum cells in quantum circuits, the ternary logic has been proposed for the design of VLSI circuits. In this paper, we first propose a new reversible ternary full-adder, called comprehensive reversible ternary full-adder, using the ternary logic capabilities. In the following, an efficient reversible ternary full-subtractor is provided. Finally, using the two proposed circuits, a new reversible ternary full-adder/full-subtractor is introduced. The results of the comparisons show that the proposed circuits have lower quantum cost and are more efficient than the other previous circuits.
机译:VLSI电路的主要挑战之一是因能量损失引起的热量。这项挑战的成功解决方案之一是以可逆的方式设计电路。因此,可逆电路的设计引起了低功耗电路设计,DNA计算和量子计算领域的许多研究人员的注意。由于三元逻辑对二进制逻辑的好处,例如降低互连电路的复杂性,减少占用表面并减少量子电路中的量子电池的数量,已经提出了用于VLSI电路的设计的三元逻辑。在本文中,我们首先使用三元逻辑功能提出了一个新的可逆三元全加法器,称为全面的可逆三元全加法器。在下文中,提供了一种有效的可逆三元全减法器。最后,使用两个提出的电路,介绍了一种新的可逆三元全加法器/全减法器。比较结果表明,所提出的电路的量子成本较低,比其他先前的电路更有效。

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