论文标题
对基于半导体的超导量子的观点
A perspective on semiconductor-based superconducting qubits
论文作者
论文摘要
在演示了基于半导体的约瑟夫森连接,通过电气可以完全调谐,已经打开了新的途径,以研究混合半导体 - 渗透量子。这些包括基于半导体的transmon Qub,单旋尺尺和基于Majorana零模式的耐故障拓扑量表。从这个角度来看,我们回顾了这种新颖的Qubit设计道路的最新进展。在简短的介绍和关于导致实验性最新技术的历史路线图的简短题外话之后,重点放在基于半导体纳米线的超导速度上
Following the demonstration of semiconductor-based Josephson junctions which are fully tuneable by electrical means, new routes have been opened for the study of hybrid semiconductor-superconductor qubits. These include semiconductor-based transmon qubits, single-spin Andreev qubits, and fault-tolerant topological qubits based on Majorana zero modes. In this perspective, we review recent progress in the path towards such novel qubit designs. After a short introduction and a brief digression about the historical roadmap that has led to the experimental state-of-the art, the emphasis is placed on superconducting qubits based on semiconductor nanowires