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Majorana Zero Modes in Networks of Cooper-Pair Boxes: Topologically Ordered States and Topological Quantum Computation
Annual Review of Condensed Matter Physics ( IF 14.3 ) Pub Date : 2020-03-16 , DOI: 10.1146/annurev-conmatphys-031218-013618
Yuval Oreg 1 , Felix von Oppen 2
Affiliation  

Recent experimental progress introduced devices that can combine topological superconductivity with Coulomb-blockade effects. Experiments with these devices have already provided additional evidence for Majorana zero modes in proximity-coupled semiconductor wires. They also stimulated numerous ideas for how to exploit interactions between Majorana zero modes generated by Coulomb charging effects in networks of Majorana wires. Coulomb effects promise to become a powerful tool in the quest for a topological quantum computer as well as for driving topological superconductors into topologically ordered insulating states. Here, we present a focused review of these recent developments, including discussions of recent experiments, designs of topological qubits, Majorana-based implementations of universal quantum computation, and topological quantum error correction. Motivated by the analogy between a qubit and a spin-1/2 degree of freedom, we also review how coupling between Cooper-pair boxes leads to emergent topologically ordered insulating phases.

中文翻译:


Cooper-Pair盒子网络中的Majorana零模式:拓扑有序状态和拓扑量子计算

最近的实验进展引入了可以将拓扑超导性与库仑阻塞效应相结合的设备。这些设备的实验已经为接近耦合半导体线中的马约拉纳零模提供了更多的证据。他们还激发了许多关于如何利用Majorana导线网络中库仑带电效应产生的Majorana零模式之间相互作用的想法。库仑效应有望成为寻求​​拓扑量子计算机以及将拓扑超导体驱动到拓扑有序的绝缘状态的强大工具。在这里,我们将重点介绍这些最新进展,包括对最新实验的讨论,拓扑量子位的设计,基于Majorana的通用量子计算实现,和拓扑量子误差校正。由于量子位和自旋1/2自由度之间的类比,我们还回顾了库珀对盒之间的耦合如何导致出现拓扑上有序的绝缘相。

更新日期:2020-04-21
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