首页> 外文会议>2016 International Conference on Micro-Electronics and Telecommunication Engineering >A Novel Design to Obtain Fault Tolerant Majority Gate for Five Input Majority Gate by Quantum Cellular Automata
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A Novel Design to Obtain Fault Tolerant Majority Gate for Five Input Majority Gate by Quantum Cellular Automata

机译:利用量子细胞自动机获得五输入多数门的容错多数门的新设计。

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Quantum-dot Cellular Automata (QCA) is a standout amongst the most alluring advances for figuring at nanoscale. The rule component in Quantum Cellular Automata is a majority gate. In this paper, fault-tolerance properties of the 5 input majority gate is studied. This segment is appropriate for outlining fault-tolerant Quantum Cellular Automata circuits. We examine fault-tolerance properties of three-input majority gate in terms of misalignment, missing, and dislocation cells. In order to authenticate the functionality of the suggested element some physical verifications using kink energy and computer simulations using QCA Designer tool are performed. Our outcomes plainly demonstrate that the excess variant of the majority gate is stronger than the standard style for this gate.
机译:量子点元胞自动机(QCA)是纳米制图领域最引人注目的进步之一。量子细胞自动机中的规则组件是多数门。本文研究了5输入多数门的容错特性。该部分适用于概述容错的量子细胞自动机电路。我们从错位,缺失和位错单元的角度检查了三输入多数门的容错特性。为了验证建议元素的功能,执行了一些使用扭结能量的物理验证,以及使用QCA Designer工具进行的计算机仿真。我们的结果清楚地表明,多数选通的过量变体要强于该选通的标准样式。

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