一、基本信息
姓名:马兴宇
性别:男
职称:讲师
所在系所:物理系
所在梯队:理论物理梯队
办公地点:理化楼131
办公电话:
电子邮件:maxy@ustb.edu.cn
本科生课程:
研究生课程:
研究领域:强关联电子体系和高温超导电性;
二、教育经历
2014-2018,四川大学,物理科学与技术学院,学士
2018-2024,北京师范大学,物理与天文学院,博士
三、工作经历
2024-2026,中国科学院物理研究所,博士后
2020年至今,北京科技大学,数理学院,讲师
四、科研业绩
代表性论著
1. Xingyu Ma, Minghuan Zeng, Zhangkai Cao and Shiping Feng, T-linear resistivity in the strange-metal phase of cuprate superconductors due to umklapp scattering from a spin excitation, Phys. Rev. B 108, 134502 (2023).
2. Xingyu Ma, Minghuan Zeng, Huaiming Guo, and Shiping Feng, Low- temperature T2 resistivity in the underdoped pseudogap phase versus T-linear resistivity in the overdoped strange-metal phase of cuprate superconductors,Phys. Rev. B 110, 094520 (2024).
3. Xingyu Ma, Minghuan Zeng, Zhangkai Cao and Shiping Feng,Low-temperature electrical transport in the normal-state of overdoped cuprate superconductors, Modern Physics Letters B 38, 2342003 (2024)
4. Xingyu Ma, Minghuan Zeng, Huaiming Guo and Shiping Feng, Correlation between the strength of low-temperature T-linear normal-state resistivity and Tc in overdoped electron-doped cuprate superconductors,Philosophical Magazine 105, 1022 (2025).
5. Xingyu Ma, Minghuan Zeng, Huaiming Guo and Shiping Feng, Impurity-Scattering
Assisted Umklapp Scattering as the Origin of Low-Temperature Resistivity in the Normal
State of Cuprate Superconductors, Condens. Matter 11, 17(2026).
6. Zhangkai Cao, Xingyu Ma, Yiqun Liu, Huaiming Guo, and Shiping Feng, Characteristic energy of the nematic-order state and its connection to enhancement of superconductivity in cuprate superconductors, Phys. Rev. B 104, 224503 (2021).
7. Zhangkai Cao, Xingyu Ma, Huaiming Guo, and Shiping Feng, Electromagnetic response of cuprate superconductors with coexisting electronic nematicity, Philosophical Magazine, 103, 1360 (2023).
科研项目
1. 铜氧化物高温超导体电子态物理性质的研究,国家自然科学基金(编号:11574032),时间:2016.01-2019.12,参与
2. 非常规超导材料的电子结构和超导机理研究,国家重点研发计划“量子调控和量子信息”重点专项(项目编号:2016YFA0300300),时间:2016.08-2021.08,参与
3. 铜氧化物高温超导体中各种有序电子态以及这些有序电子态与超导序相互纠缠的研究,国家自然科学基金(编号:11974051),时间:2020.01-2023.12,参与
4. 高温超导体配对机理研究,国家重点研发计划“量子调控和量子信息”重点专项(项目编号:2021YFA1401800),时间:2022.01-2026.12,参与
五、获得奖励
无