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首页> 外文期刊>Advanced Science Letters >Reversible Circuit Design in QCA Based on Double Feynman Gate
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Reversible Circuit Design in QCA Based on Double Feynman Gate

机译:基于Double Feynman门的QCA可逆电路设计

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摘要

Consideration energy dissipation and data loss become important in physical realization of the circuits. These problems are solved by reversible logic which does not dissipation the energy and hence will not lose the information. In this paper, one of reversible logics, new design ofDouble Feynman gate is presented. The main target of proposed design is to reduce quantum cost, the extent of the circuits and the number of garbage outputs. The proposed design leads to the reduction of power consumption and standard form in realization for complex circuits compared withprevious logic circuits. Double Feynman gate has the capability to decrease the power dissipation which is the main requirement in low power Very-large-scale integration design. Reversible logics are also a fundamental requirement in the emerging field of quantum computation. The circuit issuccessfully simulated and verified by QCA Designer tool.
机译:考虑能量耗散和数据损失在电路的物理实现中变得重要。 这些问题通过可逆逻辑解决,不耗散能量,因此不会丢失信息。 本文提出了可逆逻辑之一,展示了Double Feynman门的新设计。 所提出的设计的主要目标是减少量子成本,电路的程度和垃圾输出的数量。 所提出的设计导致在实现复杂电路的实现中减少了功耗和标准形式。 Double Feynman Gate具有降低功耗的能力,这是低功耗非常大规模集成设计的主要要求。 可逆逻辑也是新兴量子计算领域的基本要求。 电路通过QCA Designer Tool进行了发达地模拟和验证。

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