教师主页
- 曹广忠
- 曹军
- 柴彦威
- 陈彦光
- 陈耀华
- 陈效逑
- 程和发
- 楚建群
- 戴林琳
- 邓辉
- 董豫赣
- 付晓芳
- 方海
- 方精云
- 冯长春
- 冯健
- 傅伯杰
- 高艳
- 宫彦萍
- 韩茂莉
- 贺灿飞
- 贺金生
- 胡建英
- 华方圆
- 胡燮
- 黄崇
- Kazuo Isobe
- 吉成均
- 贾小新
- 金鑫
- 李宜垠
- 李有利
- 李本纲
- 李喜青
- 李双成
- 林坚
- 刘耕年
- 刘文新
- 刘峻峰
- 刘宇
- 刘鸿雁
- 刘涛
- 刘燕花
- 刘刚
- 刘煜
- 刘雪萍
- 刘茂甸
- 刘萍
- 卢晓霞
- 陆雅海
- 马亮
- 马建民
- 马燕
- 蒙吉军
- 莫多闻
- 蒙冰君
- PHILIPPE CIAIS
- 彭建
- 彭书时
- 朴世龙
- 阙维民
- 宋宛儒
- 沈文权
- 沈泽昊
- 沈国锋
- 宋峰
- 陶胜利
- 唐晓峰
- 唐志尧
- 唐艳鸿
- 陶澍
- 童昕
- 李婷婷
- 王仰麟
- 王红亚
- 王志恒
- 王娓
- 王少鹏
- 王旭辉
- 王学军
- 王喜龙
- 万祎
- 王愔
- 王长松
- 王开存
- 王昀
- 吴必虎
- 吴健生
- 吴龙峰
- 吴林蔚
- 谢建民
- 徐福留
- 许文君
- 姚蒙
- 于佳鑫
- 杨小柳
- 尹燕平
- 阴劼
- 喻航
- 曾辉
- 张家富
- 张照斌
- 赵鹏军
- 赵昕奕
- 郑成洋
- 周力平
- 周丰
- 朱东强
- 朱彪
- 朱晟君
- 朱丹
- 朱江玲
- 张尧
- 张新平
- 张璐瑶
- 赵卡娜
- 汪淼
- 袁文平
- 吴英迪
- 钟奇瑞
- 刘建宝
- 杨卉
- 张一凡
- 李梅
- 杜世宏
- 秦少杰
- 张修远
- 杨晨
- 金哲侬
- 张致杰
- 连旭
- 汪哲成
- 郑韵含
教育经历
2014/08-2017/12 美国俄克拉荷马大学,植物与微生物系,博士
2011/09-2014/06 西北农林科技大学,林学院,硕士
2007/09-2011/06 南京大学,地理与海洋科学学院,学士
工作经历
2021/05 至今 琉璃神社 ,琉璃神社 ,助理教授/研究员
2019/08-2021/04 美国劳伦斯伯克利国家实验室,博士后
2017/12-2019/07 美国哥伦比亚大学,博士后
博士生导师/方向
植被遥感,全球环境变化,陆地生态系统碳水循环,干旱等极端事件,机器学习
荣誉与奖励
黄廷方/信和青年杰出学者奖(2025)
李小文遥感科学青年奖(2025)
琉璃神社 青年教师教学基本功大赛三等奖(2025)
琉璃神社 优秀本科生毕业论文指导教师奖(2025)
JGR-Biogeoscience优秀审稿人(2021)
杂志任职
Global Change Biology Editorial Advisory Board (2025-)
《植物生态学报》编委(2024-)
《中国科学:地球科学》编委(2023-2027)
Journal of Remote Sensing 青年编委 (2022-)
《遥感技术与应用》 青年编委 (2021-)
评审任职
项目评审
Reviewer for Belgian Science Policy Office (BELSPO) STEREO III (2018)
Reviewer for Elsevier book proposal (2019)
Reviewer for NASA ROSES proposal (2020)
期刊评审
Nature; Nature Climate Change; Nature Sustainability; Nature Geoscience; Nature Reviews Earth & Environment; Nature Communications; National Science Review; The Innovation; Science Bulletin; Science China-Earth Science; Annals of the New York Academy of Sciences.
Remote Sensing of Environment; ISPRS Journal of Photogrammetry and Remote Sensing; Journal of Remote Sensing; Earth System Science Data; IEEE journal of selected topics in applied earth observations and remote sensing; IEEE geoscience and remote sensing letters; IEEE transactions on geoscience and remote sensing; International Journal of Applied Earth Observation and Geoinfomation; International Journal of Digital Earth; International Journal of Remote Sensing; Journal of Applied Remote Sensing; Remote Sensing; Remote Sensing Letters; Computers and Electronics in Agriculture; Frontiers in Artificial Intelligence;
Global Change Biology; New Phytologist; Geography and sustainability; Global Ecology and Biogeography; Agricultural and Forest Meteorology; Global and Planetary Change; njp Climate and Atmospheric Science; Communications Earth & Environment; Environmental Research Letters; Biogeosciences; Journal of Geophysical Research-Biogeoscience; Geophysical Research Letters; Ecological Applications; Landscape Ecology; Journal of Plant Ecology; Applied Goegraphy; Journal of Arid Environment; Journal of Meteorological Research;
研究组常年招收硕士、博士、博士后。欢迎对全球变化遥感,陆地生态系统碳水循环,气候变化及陆气反馈,土地利用变化,机器学习等研究方向感兴趣的同学加入研究组。也欢迎做拔尖计划的本科生加入。
讲授课程
遥感原理与应用 课程编号:12633120 专业必修 3学分 (主讲)
陆气相互作用与全球变化 课程编号:12610280 研究生课程 2学分 (主讲)
陆面过程模型和植被遥感实习 课程编号:12633130 专业选修 2学分 (主讲,参与)
自然地理博士生高级讲座 课程编号:12610140 研究生课程 (参与)
自然地理学进展 课程编号:12610010,研究生课程 (参与)
科技论文写作 课程编号:12613610,研究生课程 (参与)
指导学生
邓媛智子,2022级博士
邱靖皓,2023级博士
蔡孟阳,2023级博士
章红颖,2024级博士
江源天,2025级博士
周炜熠,2025级博士
成竞扬,2023级硕士
杨力嘉,2024级硕士
黄骥飞,2025级硕士
王叙雅,2026级硕士
陈慧娟,2022级本科
扎克娅,2023级本科
指导博士后
龚海波 (2023.09-)
邱若楠 (2024.09-) 博雅博士后,国家资助博士后,青年基金
冯思芳 (2025.09-)
已毕业学生
黄骥飞(2023.09-2025.06) 本科,琉璃神社 优秀毕业论文,未名学士,留组攻读硕士
房佳宁 (2021.07-2021.09) 暑期访问学生,美国哥伦比亚大学攻博
郭研 (2022.09-2024.06) 硕士(客座),美国印第安纳大学攻博
杨天垚(2022.09-2025.06) 硕士,保险行业
谭深 (2021.12-2024.02) 博士后,北京林业大学讲师,博士后面上基金
胡蝶 (2022.07-2024.06) 博雅博士后,中国地质大学(北京)讲师,博士后面上基金,青年基金
刘莹 (2022.07-2025.04) 博士后,中国农业大学副教授,青年基金, Nature Climate Change 一篇
李军 (2022.11-2025.06) 博雅博士后,华南理工大学副教授,青年基金,Nature Communications 一篇
琉璃神社
研究兴趣
研究主要围绕遥感方法和数据在全球变化中的应用。基于新兴遥感数据反演获取植被的冠层结构,生理过程,功能服务等多个维度的信息,结合机器学习,统计模型等分析方法,研究生态系统的状态(states)、特征(traits)和速率(rates)。重点关注陆地生态系统碳水通量,植被物候变化对气候变化的响应与反馈,干旱等极端事件的产生机理及影响,人类活动、植被变化对地球系统的反馈等。
科研项目
国家自然科学基金优秀青年科学基金(海外):全球变化植被遥感,2022/01-2024/12,主持
国家自然科学基金专项项目(42141005):中国陆地生态系统固碳速率及其不确定性、稳定性和持续性研究,2022/01-2025/12,参与
国家自然科学基金面上项目(42371096):基于日光诱导叶绿素荧光的植被干旱生理响应研究,2024/01-2027/12,主持
国家重点研发计划课题(2023YFF0805702):长江流域复合型气候极端事件对自然和社会经济系统影响,2023/12-2028/11,课题负责人
国家重点研发计划专题(2024YFF1308101):生态脆弱区植被结构复杂性与生态系统稳定性的互馈机理,2024/12-2027/11,专题负责人
数据集
1. CSIF数据集 2000-2022
2. VPM GPP 数据 2000-2018
500m
0.05度
Google scholar:
ResearchGate:
H-index 62, Citations 13000 (google scholar)
斯坦福大学全球前2%科学家(2022-2024)
Clarivate Highly Cited Researcher (2024)
第一/通讯作者文章
32. Zhang, H., Zhang, Y.*, Miralles, D., Tai, X., Koppa, A., Yang, H., Sitch, S., O’Sullivan, M., Increase in plant reliance on past precipitation associated with greening and drying. Nature Ecology & Evolution (accepted)
31. Qiu, J., Zhang, Y.*, Cai, M., Keenan, T.F., Zhang, H., Gentine, P., Luo, X., Cattry, M., Zhou, S., Piao, S., Large contribution of antecedent climate to ecosystem productivity anomalies Nature Geoscience (accepted)
30. Deng, Y., Zhang, Y.*, (2025) The response of ecosystem marginal water use efficiency to soil drying. Agricultural and Forest Meteorology
29. Cai, M., Zhang, Y.*, Qiu, J. (2025) Estimating ecosystem resilience from noisy observational data. Global Change Biology
28. Yang, T., Gong, H., Zhang, Y.*, (2025) Higher sensitivity of L-Band Vegetation Optical Depth to Foliage than Total Aboveground Biomass, Geophysical Research Letters.
27. Liu, Y., Zhang, Y.*, Peñuelas, P., Kannenberg, S.A., Gong, H., Yuan, W., Wu, C., Zhou, S., & Piao, S., (2025) Drought legacies delay spring green up in northern ecosystems. Nature Climate Change.
26. Lang, W., Zhang, Y.*, Li, X., Meng, F., Liu, Q., Wang, K., Xu, H., Chen, A., Peñuelas, J., Janssens, I, & Piao, S.*, (2025) Phenological divergence between plants and animals under climate change. Nature Ecology & Evolution.
25. Li, J., Zhang, Y.*, Bevacqua, E., Zscheischler, J., Keenan, T.F., Lian, X., Zhou, S., Zhang, H., He, M., & Piao, S., (2024) Future increase in compound soil drought-heat extremes exacerbated by vegetation greening. Nature Communications.
24. Cai, M., Zhang, Y.*, Guan, X., & Qiu, J., (2024) An adaptive spatiotemporal tensor reconstruction method for GIMMS-3g+ NDVI. Remote Sensing of Environment.
23. Tan, S., Zhang, Y.*, Qi, J., Su, Y., Ma, Q. & Qiu, J., (2024) Exploring the potential of GEDI in Characterizing Tree Height Composition based on Advanced Radiative Transfer Model Simulations. Journal of Remote Sensing.
22. Zhang, Y.*, Cai, M., Xiao, X., Yang, X., Migliavacca, M., Basara, J., Zhou, S., & Deng, Y. (2024) Immediate and lagged vegetation responses to dry spells revealed by continuous solar-induced chlorophyll fluorescence observations at a tall grass prairie. Remote Sensing of Environment.
21. Zhang, Q., Zhang, G.*, Zhang, Y.*, Xiao, X., You, N., Li, Z., Tang, H., Yang, T., Di, Y. & Dong, J.*, (2023) Coupling GEDI LiDAR and optical satellite for revealing large-scale maize lodging in Northeastern China. Earth Future.
20. Zhang, Y.* & Penuelas, J.*, (2023) Combining solar-induced chlorophyll fluorescence and optical vegetation indices to better understand plant phenological responses to global change. Journal of Remote Sensing.
19. Zhou, S.*, Yu, B., Lintner, B.R., Findell, K. & Zhang, Y.*, (2023) Projected increase in global runoff dominated by land surface changes. Nature Climate Change.
Web of Science Highly Cited (1% in Geoscience)
18. Zhang, Y.*, Fang, J., Smith, W.K., Wang, X., Gentine, P., Scott, R., Migliavacca, M., Jeong, S., Litvak, M., Zhou, S., (2023) Satellite solar-induced chlorophyll fluorescence tracks physiological drought stress development during 2020 southwest US drought. Global Change Biology.
Highlighted by Science ()
17. Hong, S., Zhang, Y., Yao, Y., Meng, F., Zhao, Q. & Zhang, Y.*, (2022) Contrasting temperature effects on the velocity of early- versus late-stage vegetation green-up in the Northern Hemisphere. Global Change Biology.
16. Zhang, Y.*, Gentine, P., Luo, X., Xu, L., Liu, Y., Zhou, S., Michalak, A.M., Sun, W., Fisher, J.B., Piao, S.L. & Keenan, T.F.*, (2022) Increased sensitivity of dryland vegetation greenness to precipitation due to rising atmospheric CO2. Nature Communications.
Web of Science Highly Cited (1% in Geoscience)
15. Zhang, Y.*, Keenan, T.F.*, Zhou, S., (2021) Exacerbated drought impact on global ecosystem due to structural overshoot. Nature Ecology & Evolution.
Web of Science Highly Cited (1% in Geoscience)
14. Zhang, Y.*, Commane, R., Zhou, S., Williams, A.P. & Gentine, P. (2020) Light limitation regulates the response of autumn terrestrial carbon uptake to warming. Nature Climate Change. 10, 739-743,
13. Zhang, Y.*, Parazoo, N., Williams, A.P., Zhou, S. & Gentine, P.* (2020) Large and projected strengthening moisture limitation on end-of-season photosynthesis. Proceedings of National Academy of Sciences. 117 (17) 9216-9222.
12. Zhang, Y.*, Zhou, S., Gentine, P., & Xiao, X. (2019) Can vegetation optical depth reflect changes in leaf water potential during soil moisture dry-down events? Remote Sensing of Environment. 234, 111451.
11. Zhang, Y.*, Joiner, J., Alemohammad, H., Zhou, S. & Gentine, P. (2018) A global spatially contiguous solar-induced fluorescence (CSIF) dataset using neural networks. Biogeosciences. 15, 5779-5800,
Web of Science Highly Cited (1% in Geoscience)
10. Zhang, Y.*, Xiao, X.*, Wolf, S., Wu, J., Wu, X., Gioli., B., Wohlfahrt, G., Cescatti, A., van der Tol, C., Zhou, S., Gough, C., Gentine, P., Zhang, Y., Steinbrecher, R., & Ardö, J. (2018) Spatio-temporal convergence of maximum daily light-use efficiency based on radiation absorption by canopy chlorophyll. Geophysical Research Letters. 45(8), 3508-3519.
9. Zhang, Y.*, Joiner, J., Gentine, P., & Zhou, S. (2018) Reduced solar-induced chlorophyll fluorescence from GOME-2 during Amazon drought caused by dataset artifacts. Global Change Biology. 24(6), 2229–2230.
8. Zhang, Y.*, Xiao, X.*, Zhang, Y., Wolf, S., Zhou, S., Joiner, J., Guanter, L., Verma, M., Sun, Y., Yang, X., Paul-Limoges, E., Gough, C., Wohlfahrt, G., Gioli, B., van der Tol, C., Yann, N., Lund, M., & Agnes de Grandcourt. (2018) On the relationship between sub-daily instantaneous and daily total gross primary production: implications for interpreting satellite-based SIF retrievals. Remote Sensing of Environment. 205, 276-289
7. Zhang, Y.*, Xiao, X.*, Wu, X., Zhou, S., Zhang, G., Qin, Y., & Dong, J. (2017). A global moderate resolution dataset of gross primary production of vegetation for 2000-2016. Scientific Data. 4, 170165,
Web of Science Highly Cited (1% in Geoscience)
6. Zhang, Y.*, Xiao, X.*, Guanter, L., Zhou, S., Ciais, P., Joiner, J., Sitch, S., Wu, X.C., Nabel, J., Dong, J.W., Kato, E., Jain, A.K., Wiltshire, A., & Stocker, B.D. (2016). Precipitation and carbon-water coupling jointly control the interannual variability of global land gross primary production. Scientific Reports. 6, 39748.
5. Zhang, Y., Xiao, X.*, Jin, C., Dong, J., Zhou, S., Wagle, P., Joiner, J., Guanter, L., Zhang, Y., Zhang, G., Qin, Y., Wang, J., & Moore, B. (2016). Consistency between sun-induced chlorophyll fluorescence and gross primary production of vegetation in North America. Remote Sensing of Environment. 183, 154-169
Web of Science Highly Cited (1% in Geoscience)
4. Zhang, Y., Xiao, X.*, Zhou, S., Ciais, P., McCarthy, H., & Luo, Y. (2016). Canopy and physiological controls of GPP during drought and heat wave. Geophysical Research Letters. 43(7), 3325-3333
3. Zhang, Y., Peng, C.H., Li, W.Z.*, Tian, L.X., Zhu, Q.Q., Chen, H., Fang, X.Q., Zhang, G.L., Liu, G.M., Mu, X.M., Li, Z.B., Li, S.Q., Yang, Y.Z., Wang, J., & Xiao, X.M. (2016). Multiple afforestation programs accelerate the greenness in the 'Three North' region of China from 1982 to 2013. Ecological Indicators, 61, 404-412
2. Zhang, Y., Li, W.*, Zhu, Q., Chen, H., Fang, X., Zhang, T., Zhao, P., & Peng, C.* (2015). Monitoring the impact of aerosol contamination on the drought-induced decline of gross primary productivity. International Journal of Applied Earth Observation and Geoinformation. 36, 30-40
1. Zhang, Y., Peng, C., Li, W.*, Fang, X., Zhang, T., Zhu, Q., Chen, H., & Zhao, P. (2013). Monitoring and estimating drought-induced impacts on forest structure, growth, function, and ecosystem services using remote-sensing data: recent progress and future challenges. Environmental Reviews. 21(2), 103-115