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李传洋

讲师


基本介绍

李传洋,山东大学等离子体物理专业博士,德州学院物理与电子信息学院讲师。主要研究方向为太阳射电爆发活动相关物理过程,重点关注太阳射电暴背后辐射机制,基于等离子体动理论、粒子模拟方法研究等离子体中波模增长性质以理解太阳射电暴观测特征。已在国际权威学术期刊《Solar Physics》《The Astrophysical Journal》等发表学术论文10余篇,其中第一作者论文4篇。曾获山东大学空间科学研究院研究生优秀科研奖一等奖、第十次全国空间天气学研讨会“优秀青年论文奖”、2023年全国太阳物理学术年会优秀报告。获得山东大学博士后重点资助,中国博士后科学基金第69批面上资助,主持国家自然科学基金青年基金和山东省自然科学基金青年基金各一项。

研究方向

(1)太阳射电爆发活动相关物理过程
(2)太阳射电辐射机制

学习和工作经历

2010.09-2014.07 山东大学空间科学与物理学院 应用物理学专业 本科
2014.09-2020.06 山东大学空间科学与物理学院 等离子体物理学专业 硕博连读
2020.10-2023.11 山东大学前沿交叉科学青岛研究院 空间天文物理融合研究中心 博士后
2023.11-至今 山东省德州学院 物理与电子信息学院 讲师

主持或参与国家级和省部级科研项目

(1)国家自然科学基金青年基金,12103029,基于PIC模拟方法的射电斑马纹辐射机制研究,2022/01-2024/12,30万元,在研,主持
(2)山东省自然科学基金青年基金,ZR2021QA033,射电斑马纹形成机制的PIC 模拟研究,2022/01-2024/12,15万元,在研,主持
(3)国家自然科学基金面上项目,11873036,终止激波在太阳耀斑粒子加速过程中的作用,2019/01-2022/12,63万元,已结题,参与(第五位)
(4)国家自然科学基金青年基金项目,11603013,利用高时空分辨率资料对小尺度日冕极紫外波的观测研究,2017/01-2019/12,24万元,已结题,参与(第三位)
(5)山东省自然科学青年基金项目,ZR2016AQ16,小尺度日冕极紫外波的观测研究,2016/11-2019/06,9万元,已结题,参与(第三位)
(6)国家自然科学基金联合基金项目,U1431103,太阳II型射电暴的成像观测研究,2015/01-2017/12,48万元,已结题,参与(第五位)
(7)山东省自然科学基金青年基金项目,ZR2014DQ001,日冕大尺度闭场结构对米波II型射电暴激发的作用,2014/12-2017/12,10万元,已结题,参与(第四位)

发表论文

[1] C. Li, Y. Chen, Z. Zhang, H. Ning, and T. Li, High-harmonic Plasma Emission Induced by Electron Beams in Weakly Magnetized Plasmas, 2023, Astrophys. J., accepted
[2] C. Li, Y. Chen, S. Ni, B. Tan, H. Ning, and Z. Zhang, PIC Simulation of Double Plasma Resonance and Zebra Pattern of Solar Radio Bursts, 2021, Astrophys. J. Lett., 909, L5
[3] C. Li, Y. Chen, X. Kong, M. Hosseinpour, and B. Wang, Effect of the Temperature of Background Plasma and the Energy of Energetic Electrons on Z-mode Excitation, 2019, Astrophys. J., 880, 31.
[4] C. Li, Y. Chen, B. Wang, G. P. Ruan, S. W. Feng, G. H. Du, and X. L. Kong, EUV and Magnetic Activities Associated with Type-I Solar Radio Bursts, 2017, Solar Phys., 292, 82.
[5] Zhang, Z., Y. Chen, C. Li, S. Ni, H. Ning, Y. Li, T. Li, and X. Kong, Waves and plasma emissions excited by ring-beam energetic electrons interacting with weakly magnetized plasmas, 2023, Physics of Plasmas, 30, 122106
[6] Ning, H., Y. Chen, S. Ni, C. Li, Z. Zhang, X. Kong, and M. Yousefzadeh, Harmonic electron-cyclotron maser emissions driven by energetic electrons of the horseshoe distribution with application to solar radio spikes, 2021, Astronomy & Astrophysics 651, A118
[7] Chen, Y., Z. Zhang, S. Ni, C. Li, H. Ning, and X. Kong, Plasma Emission Induced by Electron Beams in Weakly Magnetized Plasmas, 2022, Astrophys. J. Lett., 924, L34
[8] Ning, H., Y. Chen, S. Ni, C. Li, Z. Zhang, X. Kong, and M. Yousefzadeh, Harmonic Maser Emissions from Electrons with Loss-cone Distribution in Solar Active Regions, 2021, Astrophys. J. Lett., 920, L40
[9] S. Ni, Y. Chen, C. Li, Z. Zhang, H. Ning, X. Kong, B. Wang, and M. Hosseinpour, Plasma Emission Induced by Electron Cyclotron Maser Instability in Solar Plasmas with a Large Ratio of Plasma Frequency to Gyrofrequency, 2020, Astrophys. J. Lett., 891, L25.
[10] Feng. S. W., Y. Chen, C. Y. Li, B. Wang, Z. Wu, X. L. Kong, Q. F. Du, J. R. Zhang, and G. Q. Zhao, Harmonics of Solar Radio Spikes at Metric Wavelengths, 2018, Solar Phys., 293, 39.
[11] Lv. M. S., Y. Chen, C. Li, I. Zimovets, G. H. Du, B. Wang, S. W. Feng, and S. L. Ma, Sources of the Multi-Lane Type II Solar Radio Burst on 5 November 2014, 2017, Solar Phys., 292, 194.
[12] Zheng. R., Y. Chen, G. Du, and C. Li, Solar Jet-Coronal Hole Collision and a Closely Related Coronal Mass Ejection, 2016, Astrophys. J. Lett., 819, L18. [13] Kong. X., Y. Chen, S. Feng, G. Du, C. Li, A. Koval, V. Vasanth, B. Wang, F. Guo, and G. Li, Observation of a Metric Type N Solar Radio Burst, 2016, Astrophys. J., 830, 37.
[14] Zheng. R., Q. Zhang, Y. Chen, B. Wang, G. Du, C. Li, and K. Yang, Interaction of Two Filaments in a Long Filament Channel Associated with Twin Coronal Mass Ejections, 2017, Astrophys. J., 836, 160.
[15] Vasanth. V., Y. Chen, M. Lv, H. Ning, C. Li, S. Feng, Z. Wu, and G. Du, Source Imaging of a Moving Type IV Solar Radio Burst and Its Role in Tracking Coronal Mass Ejection from the Inner to the Outer Corona, 2019, Astrophys. J., 870, 30.
[16] Du. G., Y. Chen, C. Zhu, C. Liu, L. Ge, B. Wang, C. Li, and H. Wang, Formation of Large-scale Coronal Loops Interconnecting Two Active Regions through Gradual Magnetic Reconnection and an Associated Heating Process, 2018, Astrophys. J., 860, 40.
[17] Liu. H., Y. Chen, K. Cho, S. Feng, V. Vasanth, A. Koval, G. Du, Z. Wu, and C. Li, A Solar Stationary Type IV Radio Burst and Its Radiation Mechanism, 2018, Solar Phys., 293, 58.
[18] Du. Q.-F., L. Chen, Y.-C. Zhao, X. Li, Y. Zhou, J.-R. Zhang, F.-B. Yan, S.-W. Feng, C.-Y. Li, and Y. Chen, A solar radio dynamic spectrograph with flexible temporal-spectral resolution, 2017, Research in Astronomy and Astrophysics, 17, 098.