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南科大公众号

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教职员工

教师系列研究系列博士后研究学者行政服务

范斯腾

副教授

电子邮箱:fanst@sustech.edu.cn

办公地点:理学院E5138

研究方向:行星科学、行星大气(火星、冥王星、土卫六)

  • 简历
  • 研究领域
  • 教学
  • 论文专著

    2015年于北京大学空间科学与技术专业获得学士学位,2020年于美国加州理工学院(Caltech)行星科学专业获得博士学位,其后作为玛丽居里博士后于法国国家科学研究中心气候动力学实验室(CNRS/LMD)从事研究工作,2022年入选国家级青年人才计划。2023年夏回国工作,入职南方科技大学。主要研究方向为火星大气动力学,通过对多个卫星(TGO、EMM)观测数据的分析,结合火星大气环流模型(Mars PCM),探究火星大气中的物理过程及相互影响。其他研究方向包括还原性行星大气(冥王星、土卫六)中光化学和微观物理过程,以及类地系外行星的光变曲线的理论分析与地表反演。


    教育背景

    20157

    北京大学 空间科学与技术 学士

    20176

    加州理工学院 行星科学 硕士

    202011

    加州理工学院 行星科学 博士


    研究领域

    行星大气(火星、土卫六、冥王星)、系外行星的观测基线


    研究经历

    20132月至20157

    北京大学 空间物理与应用技术研究所 本科生

    20147月至201410

    美国 国家大气研究中心 高山天文台 访问学生

    20157月至20211

    美国 加州理工学院 地球与行星科学学院 研究生

    20212月至20237

    法国 国家科学研究中心 气候动力学实验室 博士后

    20238月至今

    南方科技大学 地球与空间科学系 副教授



    荣誉奖项

    202311

    谢义炳青年气象科技奖

    202210

    国家自然科学基金委 海外优青

    202210

    玛丽居里博士后奖学金

    20206

    国家留学基金委 优秀自费留学生奖学金

    20184

    斐陶斐奖学金

    20174

    南加州中华科工学会奖学金




    主要研究方向为火星大气动力学,通过对多个卫星(TGO、EMM)观测数据的分析,结合火星大气环流模型(Mars PCM),探究火星大气中的物理过程及相互影响。其他研究方向包括还原性行星大气(冥王星、土卫六)中光化学和微观物理过程,以及类地系外行星的光变曲线的理论分析与地表反演。

    ESS5053  前沿物理选讲B/空间物理前沿

    第一/通讯作者

    [11] Zhang, A., Yang, J., Luo, Y., and Fan, S. (2023) Forecasting the Progression of Human Civilization on the Kardashev Scale Through 2060 with a Random Forest Approach. Scientific Reports, 13, 11305. doi:10.1038/s41598-023-38351-y

    [10] Fan, S., Forget, F., Smith, M. D., Guerlet, S., Badri, K. M., Atwood, S. A., Young, R. M. B., Edwards, C. S., Christensen, P. R., Deighan, J., Al Matroushi, H. R., Bierjon, A., Liu, J., and Millour, E. (2022) Migrating Thermal Tides in the Martian Atmosphere during Aphelion Season Observed by EMM/EMIRS. Geophysical Research Letters, 49, e2022GL099494. doi:10.1029/2022GL099494

    [9] Fan, S., Zhao, D., Li, C., Shemansky, D. E., Liang, M. -C., and Yung, Y. L. (2022) Seasonal variations of chemical species and haze in Titan’s upper atmosphere. The Planetary Science Journal, 3, 130. doi:10.3847/PSJ/ac6953

    [8] Fan, S., Guerlet, S., Forget, F., Bierjon, A., Millour, E., Ignatiev, N., Shakun, A., Grigoriev, A., Trokhimovskiy, A., Montmessin, F., and Korablev, O. (2022). Thermal Tides in Martian Atmosphere near Northern Summer Solstice Observed by ACS/TIRVIM onboard TGO. Geophysical Research Letters, 49, e2021GL097130. doi:10.1029/2021GL097130

    [7] Fan, S., Gao, P., Zhang, X., Adams, D. J., Kutsop, N. W., Bierson, C. J., Liu, C., Yang, J., Young, L. A., Cheng, A. F., and Yung, Y. L. (2022). A Bimodal Distribution of Haze in Pluto's Atmosphere. Nature Communications, 13, 240. doi:10.1038/s41467-021-27811-6

    [6] Gu, L., Fan, S., Li, J. -Z., Bartlett, S. J., Natraj, V., Jiang, J. H., Crisp, D., Hu, Y., Tinetti, G., and Yung, Y. L. (2021). Earth as a Proxy Exoplanet: Deconstructing and Reconstructing Spectral Images. The Astronomical Journal, 161, 122. doi:10.3847/1538-3881/abd54a

    [5] Fan, S., and Yung, Y. L. (2020). Surface Mapping of Earth-like Exoplanets using Single Point Light Curves. Journal of Visualized Experiments, 159, e60951. doi:10.3791/60951

    [4] Fan, S., Li, C., Li, J. -Z., Bartlett, S. J., Jiang, J. H., Natraj, V., Crisp, D., and Yung, Y. L. (2019). Earth as an Exoplanet: A Two-dimensional Alien Map. The Astrophysical Journal Letters, 882, L1. doi:10.3847/2041-8213/ab3a49

    [3] Fan, S., Shemansky, D. E., Li, C., Gao, P., Wan., L., and Yung Y. L. (2019). Retrievals of Abundances of Hydrocarbons and Nitrile Species in Titan’s upper Atmosphere. Earth and Space Science, 6, 1057. doi:10.1029/2018EA000477

    [2] Fan, S., He, J., Yan, L., Tomczyk, S., Tian, H., Song, H., Wang, L., and Zhang, L. (2018). Turbulence and Heating in the Flank and Wake Regions of a Coronal Mass Ejection. Solar Physics, 293, 6. doi:10.1007/s11207-017-1221-1

    [1] Fan, S., and Batygin, K. (2017). Simulations of the Solar System's Early Dynamical Evolution with a Self-gravitating Planetesimal Disk. The Astrophysical Journal Letters, 851, L37. doi:10.3847/2041-8213/aa9f0b


    其他合作者

    [13] Guerlet, S., Fan, S., Forget, F., Ignatiev, N., Millour, E., Kleinböhl, A., Shakun, A., Grigoriev, A., Trokhimovskiy, A., Montmessin, F., and Korablev, O. (2023) Thermal Tides on Mars Before and During the 2018 Global Dust Event as Observed by TIRVIM-ACS Onboard ExoMars Trace Gas Orbiter. Journal of Geophysical Research: Planets, 128, e2023JE007851. doi:10.1029/2023JE007851

    [12] Liu J., Millour, E., Forget, F., Gilli, G., Lott, F., Bardet, D., Galindo, F. G., Bierjon, A., Naar, J., Martinez, A., Lebonnois, S., Fan, S., Pierron, T., and Vandemeulebrouck, R. (2023). A Surface to Exosphere Non-orographic Gravity Wave Parameterization for the Mars Planetary Climate Model. Journal of Geophysical Research: Planets, 128, e2023JE007769. doi:10.1029/2023JE007769

    [11] Wang, J., Fan, S., Liu, C., Natraj, V., Young, L. A., and Yung, Y. L. (2023). Impacts of Organic Ice Condensation on the Optical Properties of Haze on Pluto. The Planetary Science Journal, 4, 17. doi:10.3847/PSJ/acaf30

    [10] Natraj, V., Spurr, R., Gao, A., Le, T., Zeng, Z.-C., Fan, S., and Yung, Y. L. (2022). The 2 Stream-Exact Single Scattering (2S-ESS) Radiative Transfer Model. Journal of Quantitative Spectroscopy and Radiative Transfer, 295, 108416. doi:10.1016/j.jqsrt.2022.108416

    [9] Gu, L., Zeng, Z. -C., Fan, S., Natraj, V., Jiang, J. H., Crisp, D., Yung, Y. L., and Hu, Y. (2022). Earth as a Proxy Exoplanet: Simulating DSCOVR/EPIC Observations Using the Earth Spectrum Simulator (ESS). The Astronomical Journal, 163, 285. doi:10.3847/1538-3881/ac5e2e

    [8] Guerlet, S., Ignatiev, N., Forget, F., Fouchet, T., Vlasov, P., Bergeron, G., Young, R. M. B., Millour, E., Fan, S., Tran, H., Shakun A., Grigoriev, A., Trokhimovskiy, A., Montmessin, F., and Korablev, O. (2022). Thermal Structure and Aerosols in Mars’ Atmosphere from TIRVIM/ACS onboard the ExoMars Trace Gas Orbiter: Validation of the Retrieval Algorithm. Journal of Geophysical Research: Planets, 127, e2021JE007062. doi:10.1029/2021JE007062

    [7] Bartlett, S. J., Li, J. -Z., Gu, L., Sinapayen, L., Fan, S., Natraj, V., Jiang, J. H., Crisp, D., and Yung, Y. L. (2022). Assessing Planetary Complexity and Agnostic Biosignatures Using Epsilon Machines. Nature Astronomy, 6, 387. doi:10.1038/s41550-021-01559-x

    [6] Kutsop, N. W., Hayes, A. G., Buratti, B. J., Corlies, P. M., Ennico, K., Fan, S., Gladstone, R., Helfenstein, P., Hofgartner, J. D., Hicks, M., Lemmon, M., Lunine, J. I., Moore, J., Olkin, C. B., Parker, A. H., Stern, S. A., Weaver, H. A., Young, L. A., and The New Horizons Science Team (2021). Pluto's Haze Abundance and Size Distribution from Limb Scatter Observations by MVIC. The Planetary Science Journal, 2, 91. doi:10.3847/PSJ/abdcaf

    [5] Aizawa, M., Kawahara, H., and Fan, S. (2020). Global Mapping of an Exo-Earth Using Sparse Modeling. The Astrophysical Journal, 896, 22. doi:10.3847/1538-4357/ab8d30

    [4] Yung, Y. L., Long, J., Jiang, J. H., Fan, S., Jiang, X., and Shia, R. -L. (2019). Effect of the Quasi-biennial Oscillation on Carbon Monoxide in the Stratosphere. Earth and Space Science, 6, 1273. doi:10.1029/2018EA000534

    [3] Li, J. -Z., Fan, S., Kopparla, P., Liu, C., Jiang, J. H., Natraj, V., and Yung, Y. L. (2019). Study of Terrestrial Glints Based on DSCOVR Observations. Earth and Space Science, 6, 166. doi:10.1029/2018EA000509

    [2] Gao, P., Fan, S., Wong, M. L., Liang, M. -C., Shia, R. -L., Kammer, J. A., Yung, Y. L., Summers, M. E., Gladstone., G. R., Young, L. A., Olkin, C. B., Ennico, K., Weaver, H. A., Stern, S. A., and the New Horizons Science Team (2017). Constraints on the Microphysics of Pluto’s Photochemical Haze from New Horizons Observations. Icarus, 287, 116. doi:10.1016/j.icarus.2016.09.030

    [1] Wong, M. L., Fan, S., Gao, P., Liang, M. -C., Shia, R. -L., Kammer, J. A., Yung, Y. L., Summers, M. E., Gladstone., G. R., Young, L. A., Olkin, C. B., Ennico, K., Weaver, H. A., Stern, S. A., and the New Horizons Science Team (2017). The Photochemistry of Pluto’s Atmosphere as Illuminated by New Horizons. Icarus, 287, 110. doi:10.1016/j.icarus.2016.09.028

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