周苏,理学博士,副教授,教育部留学归国人员,于2018年6月在中国科学技术大学获得地球物理学专业博士学位,2018年10月进入同济大学从事博士后研究,于2019年9月入职贵阳学院。在2016年9月至2017年8月之间受国家留学基金委(CSC)支助,赴挪威卑尔根大学伯克兰空间科学中心(Birkeland Centre for Space Science, University of Bergen, Norway)留学访问,主持国家级科研项目2项,中国科学院开放课题1项,省部级项目1项,市厅级项目1项,校级项目2项,承担《大学物理》、《高等数学》、《概率论与数理统计》以及《数字信号处理》等课程的教学工作。
研究方向
1. 近地空间卫星等离子体数据分析方法
2. 地球高纬极区粒子沉降现象与电离层效应
3. 地球磁层低能电子加热与损失机制
主持科研项目
(1) 国家自然科学基金委地区科学基金项目,“亚极光弧与极光椭圆分离机制研究”,项目号:42164009,2022.01-2025.12,主持
(2) 国家自然科学基金委青年科学基金项目,“基于DMSP/SSUSI观测的喉区极光统计研究”,项目号:41904139,2020.01-2022.12,主持
(3) 中国科学院近地空间环境重点实验室开放课题,“磁暴期间亚极光弧的形成机制研究”,项目号:GE2020-01,2020.07-2022.06,主持
(4) 贵州省教育厅普通高等学校科技拔尖人才项目,“基于低轨卫星图像数据的极光统计研究”,项目号:黔教合KY字[2019]064,2019.11-2022.10,主持
(5) 贵州省科技厅基础研究项目,“亚极光弧的空间卫星与地基台站联合观测研究”,项目号:黔科合基础-ZK[2022]一般015,2022.04-2025.03,主持
(6) 贵阳学院高层次人才引进科研启动项目,“亚极光带粒子沉降机制及其电离层效应”,项目号:GYU-KY-[2021],2020.07-2023.06,主持
(7) 贵阳市财政学科建设与研究生教育项目,“基于DMSP卫星数据研究近地空间环境变化”,项目号:DT-2020,2020.03-2020.12,主持
已发表SCI论文(第一作者或通讯作者)
(1) Zhou, S., Luan, X.*, Han, D., & Teng, S. (2023). Direct observation of low-energy electron precipitation in the subauroral region. Journal of Geophysical Research: Space Physics, 128, e2023JA031768. https://doi.org/10.1029/2023JA031768
(2) Zhou, S., Luan, X.*, Burch, J. L., Yao, Z., Han, D.-S., Tian, C., et al. (2021). A possible mechanism on the detachment between a subauroral proton arc and the auroral oval. Journal of Geophysical Research: Space Physics, 126, e2020JA028493. https://doi.org/10.1029/2020JA028493
(3) Tian, C.‐J., Du, H.‐D., Yang, P.‐L., Zhou, Z.‐M.*, Zhao, X.‐F., & Zhou, S*. (2020). Automatic auroral boundary determination algorithm with deep feature and dual level set. Journal of Geophysical Research: Space Physics, 125, e2020JA027833. https://doi.org/10.1029/2020JA027833
(4) Zhou, S., Han, D.*, Gokani, S. A., Ravindran, S., & Zhang, Y. (2020). Throat aurora observed by DMSP/SSUSI in a global view. SCIENCE CHINA Earth Sciences, 1674-7313. https://doi.org/10.1007/s11430-019-9592-y
(5) Zhou, S.*, Shiokawa, K., Poddelsky, I., Chen, Y., & Zhang, J. (2020). Probing afternoon detached aurora and high-latitude trough based on DMSP observations. Advances In Space Research, 65(1), 214-220. https://doi.org/10.1016/j.asr.2019.10.003
(6) Zhou, S.*, Chen, Y., & Zhang, J. (2020). A case study of isolated auroral spots based on DMSP data. Journal Of Atmospheric And Solar-terrestrial Physics, 197, 105176. https://doi.org/10.1016/j.jastp.2019.105176
(7) Zhou, S., Luan, X.*, Pierrard, V., & Han, D. (2019). Isolated Auroral Spots Observed by DMSP/SSUSI. Journal of Geophysical Research: Space Physics, 124(11), 8416-8426. https://doi.org/10.1029/2019JA026853
(8) Yao, J., Cai, Y., Ma, Y., & Zhou, S.* (2019). Evening corotating patches (ECP) observed by DMSP/SSUSI. Journal Of Atmospheric And Solar-terrestrial Physics, 186, 82-87. https://doi.org/10.1016/j.jastp.2019.02.008
(9) Zhou, S., Luan, X.*, Søraas, F., Østgaard, N., & Raita, T. (2018). The Detached Auroras Induced by the Solar Wind Pressure Enhancement in Both Hemispheres From Imaging and In Situ Particle Observations. Journal of Geophysical Research: Space Physics, 123(4), 3170-3182. https://doi.org/10.1002/2017JA024562
(10) Luan, X., Zhou, S.*, & Dou, X. (2018). Auroral Energy Flux Distribution Over the Nightside Auroral Oval Observed by the DMSP F16/SSUSI: Seasonal, Geomagnetic, and Solar Activity Dependences. Journal of Geophysical Research: Space Physics, 123(5), 4457-4466. https://doi.org/10.1029/2017JA023970
(11) Zhou, S., Luan, X.*, & Dou, X. (2016). Solar activity dependence of nightside aurora in winter conditions. Journal of Geophysical Research: Space Physics, 121(2), 1619-1626. https://doi.org/10.1002/2015JA021865