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基于石墨烯的改进型 Deutsch-Jozsa 量子算法的室温实现

Graphene-based room-temperature implementation of a modified Deutsch-Jozsa quantum algorithm.

作者信息

Dragoman Daniela, Dragoman Mircea

机构信息

University of Bucharest, Faculty of Physics, PO Box MG-11, 077125 Bucharest, Romania.

出版信息

Nanotechnology. 2015 Dec 4;26(48):485201. doi: 10.1088/0957-4484/26/48/485201. Epub 2015 Nov 6.

Abstract

We present an implementation of a one-qubit and two-qubit modified Deutsch-Jozsa quantum algorithm based on graphene ballistic devices working at room temperature. The modified Deutsch-Jozsa algorithm decides whether a function, equivalent to the effect of an energy potential distribution on the wave function of ballistic charge carriers, is constant or not, without measuring the output wave function. The function need not be Boolean. Simulations confirm that the algorithm works properly, opening the way toward quantum computing at room temperature based on the same clean-room technologies as those used for fabrication of very-large-scale integrated circuits.

摘要

我们展示了一种基于室温下工作的石墨烯弹道器件的单量子比特和双量子比特改进型Deutsch-Jozsa量子算法的实现。改进后的Deutsch-Jozsa算法可在不测量输出波函数的情况下,确定一个等同于能量势分布对弹道电荷载流子波函数影响的函数是否为常数。该函数不必是布尔函数。模拟结果证实该算法运行正常,为基于与超大规模集成电路制造相同的洁净室技术的室温量子计算开辟了道路。

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