基本信息
余抨      前沿交叉科学学院
电子邮件: yup@ucas.ac.cn
通信地址: 北京市怀柔区雁栖湖东路1号东实验楼209
邮政编码: 101408

研究领域

拓扑量子计算实验研究——面向容错量子比特的器件物理与操控技术


  • 本课题组致力于拓扑量子计算的核心实验研究,聚焦于马约拉纳零能模这一拓扑保护量子态的实现与操控。研究内容涵盖从材料平台、微纳加工、极低温量子输运及扫描隧道显微镜测量到量子比特原型器件的全链条实验物理,目标是为未来容错量子计算提供可行的物理实现路径。

招生信息

【1】每年招收凝聚态物理实验硕博连读研究生1~2名。

【2】课题组招聘博士后1~2名,研究方向/办公地点灵活,提供具有竞争力的薪资(>=40万),欢迎邮件详谈。

【3】欢迎本校及外校本科生寒暑假期间来进行科研实践以及做毕业设计。

教育及工作经历

2012-09--2020-08   匹兹堡大学   博士
2008-09--2012-07   吉林大学   学士

代表性论文

1) Yu, P., Chen, J., Gomanko, M., Badawy, G., Bakkers, E. P. A. M., Zuo, K., Mourik, V., & Frolov, S. M.. Non-majorana states yield nearly quantized conductance in proximatized nanowires. Nature Physics (2021), 17(4), 482–488.

2) Chen, J., Yu, P. (共同一作), Stenger, J., Hocevar, M., Car, D., Plissard, S. R., Bakkers, E. P., Stanescu, T. D., & Frolov, S. M.. Experimental phase diagram of zero-bias conductance peaks in superconductor/semiconductor nanowire devices. Science Advances (2017), 3(9), e1701476.

3) Yu, P., Woods, B. D., Chen, J., Badawy, G., Bakkers, E. P. A. M., Stanescu, T. D., & Frolov, S. M.. Delocalized states in three-terminal superconductor-semiconductor nanowire devices. SciPost Phys. (2023), 15, 005.

4) Yu, P., Fu, H., Schiela, W. F., Strickland, W., Elfeky, B. H., Farzaneh, S. M., Issokson, J., Rossi, E., & Shabani, J.. Gate-tunable enhancement of supercurrent in hybrid planar Josephson junctions. Phys. Rev. B (2025), 112, 075419. (Editors' Suggestion)

5) Yu, P., Fu, H., Schiela, W. F., Strickland, W., Elfeky, B. H., Farzaneh, S. M., Issokson, J., Rossi, E., & Shabani, J.. Enhanced superconducting diode effect in hybrid Josephson junctions. Phys. Rev. B (2026), 113, 205411. (Editors' Suggestion)

6) Schiela, W. F., Yu, P.(通讯作者), & Shabani, J.. Progress in superconductor-semiconductor topological Josephson junctions. PRX Quantum (2024), 5, 030102.

7) Li, K., Zhang, C., Ma, S., Wang, C., Liu, J., Cheng, Y., Ju, D., Yu, P.(通讯作者), Liang, X., Ren, T., & Nan, T.. Compact and self-biased linbo3 shear bulk acoustic wave magnetic field sensor. IEEE Electron Device Letters, 1–1. (2025).

8) Chen, J., Woods, B. D., Yu, P., Hocevar, M., Car, D., Plissard, S. R., Bakkers, E. P. A. M., Stanescu, T. D., & Frolov, S. M. Ubiquitous non-majorana zero-bias conductance peaks in nanowire devices. Phys. Rev. Lett. (2019)., 123, 107703.