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首页> 外文期刊>Journal of Turbulence >Reversible binary subtractor design using quantum dot-cellular automata
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Reversible binary subtractor design using quantum dot-cellular automata

机译:使用量子点 - 蜂窝自动机的可逆二元减法器设计

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In the field of nanotechnology, quantum dot-cellular automata (QCA) is the promising archetype that can provide an alternative solution to conventional complementary metal oxide semiconductor (CMOS) circuit. QCA has high device density, high operating speed, and extremely low power consumption. Reversible logic has widespread applications in QCA. Researchers have explored several designs of QCA-based reversible logic circuits, but still not much work has been reported on QCA-based reversible binary subtractors. The low power dissipation and high circuit density of QCA pledge the energy-efficient design of logic circuit at a nano-scale level. However, the necessity of too many logic gates and detrimental garbage outputs may limit the functionality of a QCA-based logic circuit. In this paper we describe the design and implementation of a DG gate in QCA. The universal nature of the DG gate has been established. The QCA building block of the DG gate is used to achieve new reversible binary subtractors. The proposed reversible subtractors have low quantum cost and garbage outputs compared to the existing reversible subtractors. The proposed circuits are designed and simulated using QCA Designer-2.0.3.
机译:在纳米技术领域中,量子点 - 蜂窝自动机(QCA)是有前途的原型,可以为常规互补金属氧化物半导体(CMOS)电路提供替代解决方案。 QCA具有高设备密度,高运行速度和极低的功耗。可逆逻辑在QCA中具有广泛应用。研究人员探索了基于QCA的可逆逻辑电路的几种设计,但在基于QCA的可逆二进制减法器上报告了仍然没有太大的工作。 QCA的低功耗和高电路密度承诺在纳米级水平下逻辑电路的节能设计。然而,太多逻辑门和有害垃圾输出的必要性可以限制基于QCA的逻辑电路的功能。在本文中,我们描述了QCA中DG门的设计和实现。已经建立了DG门的普遍性质。 DG门的QCA构建块用于实现新的可逆二进制减法器。与现有的可逆减值声相比,所提出的可逆减法器具有低量子成本和垃圾输出。使用QCA Designer-2.0.3设计和模拟所提出的电路。

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