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首页> 外文期刊>Engineering Review >NEW EFFICIENT DESIGNS OF REVERSIBLE LOGIC GATES AND CIRCUITS IN THE QCA TECHNOLOGY
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NEW EFFICIENT DESIGNS OF REVERSIBLE LOGIC GATES AND CIRCUITS IN THE QCA TECHNOLOGY

机译:QCA技术可逆逻辑门和电路的新高效设计

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摘要

Quantum-dot cellular automata (QCA) is a developing nanotechnology, which seems to be a good candidate to replace the conventional complementary metal-oxide-semiconductor (CMOS) technology. The QCA has the advantages of very low power dissipation, faster switching speed, and extremely low circuit area, which can be used in designing nanoscale reversible circuits. In this paper, the new efficient QCA implementations of the basic reversible Gates such as: CNOT, Toffoli, Feynman, Double Feynman, Fredkin, Peres, MCL, and R Gates are presented based on the straight interactions between the QCA cells. Also, the designs of 4-Bit reversible parity checker and 3-bit reversible binary to Grey converter are introduced using these optimized reversible Gates. The proposed layouts are designed and simulated using QCADesigner software. In comparison with previous QCA designs, the proposed layouts are implemented with the minimum area, minimum number of cells, and minimum delay without any wire-crossing techniques. Also, in comparison with the CMOS technology, the proposed layouts are more efficient in terms of the area and power. Therefore, our designs can be used to realize quantum computation in ultralow power computer communication.
机译:量子点蜂窝自动机(QCA)是一种显影纳米技术,似乎是更换常规互补金属氧化物半导体(CMOS)技术的良好候选者。 QCA具有非常低的功耗,更快的开关速度和极低电路区域的优点,可用于设计纳米级可逆电路。在本文中,基于QCA细胞之间的直的相互作用,提出了基本可逆门的新高效QCA实现,如:CNOT,Toffoli,Feynman,Double Feynman,Freynman,Fredkin,珀尔斯,MCL和R门。此外,使用这些优化的可逆门引入了4位可逆奇偶校验器和3位可逆二进制到灰色转换器的设计。使用QCadeIgner软件设计和模拟所提出的布局。与以前的QCA设计相比,所提出的布局用最小面积,最小电池数和最小延迟实现,而没有任何线交叉技术。而且,与CMOS技术相比,所提出的布局在面积和功率方面更有效。因此,我们的设计可用于实现超级电力计算机通信中的量子计算。

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