Majorana fermions and its application on topological quantum computer

Chengyi Wang
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引用次数: 0

Abstract

The majorana fermion represents a kind of particle which is its own antiparticle. This paper aims to analyze the majorana fermions from theoretical aspect and application aspect, including the derivation of Dirac equation and the practicality of topological quantum computer. This paper explores the idea of Majorana fermions from Dirac equation and the anyons which is an important quasi-particle to build a topological quantum computer. After that, the potentials of quantum computer are emphasized as well. Several current major difficulties faced by building a quantum computer have also been discussed, including the decoherence of qubit and the errors during the operation of qubit. The advantages of topological computer are mentioned as well, especially the high resistance to local perturbation. The important property of two-dimensional non-abelian anyons has been discussed as well. Finally, the important relation of majorana fermions with anyons are introduced and the reason why majorana fermions is important has also been revealed.
马约拉纳费米子及其在拓扑量子计算机上的应用
大纳费米子是一种粒子,它是自己的反粒子。本文旨在从理论和应用两方面分析马约拉纳费米子,包括狄拉克方程的推导和拓扑量子计算机的实用性。本文从狄拉克方程出发,探讨了马约拉纳费米子的概念,以及作为构建拓扑量子计算机重要准粒子的anyons。随后,本文还强调了量子计算机的潜力。此外,还讨论了当前构建量子计算机所面临的几个主要困难,包括量子比特的退相干性和量子比特运行过程中的误差。此外,还提到了拓扑计算机的优势,尤其是对局部扰动的高抗扰性。此外,还讨论了二维非阿贝尔任子的重要特性。最后,介绍了大纳费米子与任子的重要关系,并揭示了大纳费米子重要的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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