Towards practical quantum computers: transmon qubit with a lifetime approaching 0.5 milliseconds

Author:

Wang Chenlu,Li Xuegang,Xu Huikai,Li Zhiyuan,Wang Junhua,Yang Zhen,Mi Zhenyu,Liang Xuehui,Su Tang,Yang Chuhong,Wang Guangyue,Wang Wenyan,Li Yongchao,Chen Mo,Li Chengyao,Linghu Kehuan,Han Jiaxiu,Zhang Yingshan,Feng Yulong,Song Yu,Ma Teng,Zhang JingningORCID,Wang Ruixia,Zhao Peng,Liu WeiyangORCID,Xue Guangming,Jin Yirong,Yu Haifeng

Abstract

AbstractHere we report a breakthrough in the fabrication of a long lifetime transmon qubit. We use tantalum films as the base superconductor. By using a dry etching process, we obtained transmon qubits with a best T1 lifetime of 503 μs. As a comparison, we also fabricated transmon qubits with other popular materials, including niobium and aluminum, under the same design and fabrication processes. After characterizing their coherence properties, we found that qubits prepared with tantalum films have the best performance. Since the dry etching process is stable and highly anisotropic, it is much more suitable for fabricating complex scalable quantum circuits, when compared to wet etching. As a result, the current breakthrough indicates that the dry etching process of tantalum film is a promising approach to fabricate medium- or large-scale superconducting quantum circuits with a much longer lifetime, meeting the requirements for building practical quantum computers.

Publisher

Springer Science and Business Media LLC

Subject

Computational Theory and Mathematics,Computer Networks and Communications,Statistical and Nonlinear Physics,Computer Science (miscellaneous)

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