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  陈剑
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陈剑
2013-10-25 14:08:08     (点击次数:)

undefined简介:陈剑,男,汉族,19928月生,浙江温州人,理学博士,主要研究方向为月球光谱学与物质成分,主持国家自然科学基金、山东省自然科学基金、中国博士后科学基金等科研项目4项,作为骨干参与探月四期嫦娥七号载荷研制项目、ZRDY国家重大项目、科技部国家科技基础性工作专项、重点研发计划、国家自然科学基金专项、ZRGS等项目/课题十余项,在CSBNANCApJLCEEA&AGRLJGRIcarusJRS、M&PSESS、中国科学等期刊发表SCI/EI论文50余篇,其中第一/通讯作者论文10篇,中科院一区期刊论文6篇,Top期刊论文7篇,被引500余次,曾获COSPAR青年科学家优秀论文奖、全国博士后论坛优秀报告奖,授权国家发明专利4项。(2023年6月26日更新)

研究领域:

月球遥感与光谱学、月球样品与着陆区研究

邮箱merchenj@sdu.edu.cn

地址(房间号)闻天楼(南)412

职称:博士后

主要教育经历:

1、2016/09-2020/06,山东大学(威海),理论物理专业,天体元素丰度方向,硕博连读博士研究生,导师:赵刚、凌宗成

2、2017/10-2018/11,圣路易斯华盛顿大学地球与行星科学系联合培养博士,导师:Alian Wang、Brad Jolliff、Randy Korotev、Kun Wang

3、2010/09-2014/07,山东大学(威海),空间科学与技术专业,本科

主要科研经历:

12015/092020/08-2020/092022/08,中国科学院地球化学研究所,月球数字地质图编研

22014/03-,山东大学(威海)行星科学研究中心,月球岩石类型分布图编研

32013/11-,山东大学(威海)行星科学研究中心,嫦娥系列月球探测器γ射线、X射线谱仪数据处理、分析以及科学应用

42011/05-2013/04,山东大学(威海),大学生科研作品立项(SRTP),太阳系外行星测光与光谱学观测,系外行星系统物理参数分析,行星系统形成与动力学演化理论研究

主要研究项目:

12022-202442102280,主持,国家自然科学基金委,青年科学基金,嫦娥五号着陆区月面真值与区域地质演化研究

22022-2024ZR2021QD016,主持,山东省自然科学基金委,青年基金,嫦娥五号月球样品分析与月面遥感定标区构建

32020-20222020M682164,主持,中国博士后科学基金委,面上项目,月海玄武岩时空分布与岩浆演化研究

42023-2023,主持,中国科学院地球化学研究所,横向项目,月球资源利用专题征集与筛选

52022-2024DD20221645,实际负责,中国地质调查局,基础地质数据更新工程二级项目,月球物质成分分布及其成因研究与编图

62015-20202015FY210500-3,实际负责,科技部,国家科技基础性工作专项课题,月球岩石类型分布图编研

72020-202341972322,参与,国家自然科学基金委,面上项目,年轻月海玄武岩年龄与岩浆演化

82022-2023,参与,澳门科技大学月球与行星科学国家重点实验室,开放课题,基于嫦娥五号任务数据的月球年代学函数校正及对全月火山作用年代学的制约

92020-2022D020102,参与,国防科工局,民用航天技术预研项目,火星表面物质组成、土壤特征及着陆区地质演化研究

102022-2025,参与,国防科工局,探月四期有效载荷研制项目,嫦娥七号拉曼光谱仪

主要获奖经历:

2022年,空天科技全国博士后论坛优秀报告奖

2017年,入选国家留学基金委创新性人才国际合作培养项目;

2016年,国际空间研究委员会(COSPAR)青年科学家优秀论文奖

主要期刊论文:

1. Zhao, Z., Chen, J.*, Ling, Z.*, Lu, X. and Li, Z., 2023. Chronology, composition, and mineralogy of mare basalts in the junction of Oceanus Procellarum, Mare Imbrium, Mare Insularum, and Mare Vaporum. Icarus, 397, p.115531.(影响因子3.645,中科院二区)

2. Lu, X.#, Chen, J.#, Ling, Z., Liu, C., Fu, X., Qiao, L., Zhang, J., Cao, H., Liu, J., He, Z. and Xu, R., 2023. Mature lunar soils from Fe-rich and young mare basalts in the Chang’e-5 regolith samples. Nature Astronomy, 7(2), pp.142-151.(影响因子15.647,中科院一区Top)

3. Chen, J., Ling, Z., Liu, J., Chen, S., Ding, X., Chen, J., Cheng, W., Li, B., Zhang, J., Sun, L. and Liu, C., 2022. Digital and global lithologic mapping of the Moon at a 1: 2,500,000 scale. Science Bulletin, 67(20), pp.2050-2054.(影响因子20.577,中科院一区Top)

4. Chen, J., Ling, Z., Jolliff, B.L., Sun, L., Qiao, L., Liu, J., Fu, X., Zhang, J., Li, B., Liu, C. and Qi, X., 2022. Radiative Transfer Modeling of Chang’e-4 Spectroscopic Observations and Interpretation of the South Pole-Aitken Compositional Anomaly. Astrophysical Journal Letters, 931(2), p.L24.(影响因子8.811,中科院一区)

5. Chen, J., Ling, Z., Qiao, L., He, Z., Xu, R., Sun, L., Zhang, J., Li, B., Fu, X., Liu, C. and Qi, X., 2020. Mineralogy of Chang’e-4 landing site: Preliminary results of visible and near-infrared imaging spectrometer. Science China Information Sciences, 63, pp.1-12.(影响因子3.304,中科院二区)

6. Chen, J., Jolliff, B.L., Wang, A., Korotev, R.L., Wang, K., Carpenter, P.K., Chen, H., Ling, Z., Fu, X., Ni, Y. and Cao, H., 2019. Petrogenesis and shock metamorphism of basaltic lunar meteorites Northwest Africa 4734 and 10597. Journal of Geophysical Research: Planets, 124(10), pp.2583-2598.(影响因子3.969,中科院二区)

7. Cao, H.#, Chen, J.#, Fu, X. and Ling, Z., 2020. Raman and infrared spectroscopic perspectives of lunar meteorite Northwest Africa 4884. Journal of Raman Spectroscopy, 51(9), pp.1652-1666.(影响因子2.000,中科院三区)

8. Chen, J., Ling, Z., Li, B., Zhang, J., Sun, L. and Liu, J., 2016. Abundance and distribution of radioelements in lunar terranes: Results of Chang’E-1 gamma ray spectrometer data. Advances in Space Research, 57(3), pp.919-927.(影响因子1.409,中科院二区)

9. Chen, J., Ling, Z., Li, B., Sun, L., Zhang, J., Huang, Y., Wu, Z., Ni, Y. and Liu, J., 2017. Compositions and possible sources of lunar meteorite NWA 4884. Acta Geologica Sinica‐English Edition, 91(s1), pp.269-270.

10. 陈剑, 凌宗成, 李勃, 孙灵芝, 张江, 刘建忠, 2016. 嫦娥二号 γ 谱数据反演月表Fe元素分布. 中国科学: 物理学, 力学, 天文学, 46(2), pp.53-60.

11. Cao, H., Chen, J., Fu, X., Xin, Y., Qi, X., Shi, E. and Ling, Z., 2022. Raman spectroscopic and geochemical studies of primary and secondary minerals in Martian meteorite Northwest Africa 10720. Journal of Raman Spectroscopy, 53(3), pp.420-434.

12. Qiao, L., Chen, J., Xu, L., Wan, S., Cao, H., Li, B. and Ling, Z., 2021. Geology of the Chang'e-5 landing site: Constraints on the sources of samples returned from a young nearside mare. Icarus, 364, p.114480.

13. Cao, H., Chen, J. and Ling, Z., 2019. Laboratory synthesis and spectroscopic studies of hydrated Al-sulfates relevant to Mars. Icarus, 333, pp.283-293.

14. 曹海军, 陈剑, 乔乐, 付晓辉, 卢学金, 齐晓彬, 万晟, 凌宗成, 刘建忠, 2023. 嫦娥五号着陆区的成分特征与遥感地质研究. 中国科学:物理学, 力学, 天文学, 53(3), p.239605.

15. 曹海军, 陈剑, 凌宗成, 2023. 穿越时空——一览月球地质演化历史画卷. 矿物岩石地球化学通报, 42, https://kns.cnki.net/kcms/detail//52.1102.P.20230209.1142.002.html

16. 乔乐, 陈剑 and 凌宗成, 2021. 月球火山作用的地貌学特征. 地质学报. 95(9), pp.2678-2691.

17. Liu, C., Liu, L., Chen, J., Cao, H., Qu, H., Qiao, L., Zhang, J., Qi, X., Lu, X., Xu, R. and Wang, Z., 2022. Mafic mineralogy assemblages at the Chang’e-4 landing site: A combined laboratory and lunar in situ spectroscopic study. Astronomy & Astrophysics, 658, p.A67.

18. Cao, H., Wang, C., Chen, J., Che, X., Fu, X., Shi, Y., Liu, D., Ling, Z., Qiao, L., Lu, X. and Qi, X., 2022. A Raman Spectroscopic and Microimage Analysis Perspective of the Chang'e‐5 Lunar Samples. Geophysical Research Letters, 49(13), p.e2022GL099282.

19. Cao, H., Ling, Z., Chen, J., Fu, X. and Zou, Y., 2021. Petrography, mineralogy, and geochemistry of a new lunar magnesian feldspathic meteorite Northwest Africa 11460. Meteoritics & Planetary Science, 56(10), pp.1857-1889.

20. Fu, X., Cao, H., Chen, J., Hou, X., Ling, Z., Xu, L., Zou, Y., Tang, C. and Hsu, W., 2021. Petrology and geochemistry of lunar feldspathic meteorite Northwest Africa 11111: Insights into the lithology of the lunar farside highlands. Meteoritics & Planetary Science, 56(10), pp.1829-1856.

21. Qi, X., Ling, Z., Liu, P., Chen, J. and Cao, H., 2023. Quantitative Mineralogy of Planetary Silicate Ternary Mixtures using Raman Spectroscopy. Earth & Space Science, 10(5), p.e2023EA002825.

22. Fu, Y., Wang, H., Zhang, J., Chen, J., Shi, Q., Yue, C., Lin, H., Guo, R., Tian, A., Xiao, C. and Shang, W., 2023. Possible Formation Mechanism of Lunar Hematite. Magnetochemistry, 9(2), p.43.

23. Xin, Y., Cao, H., Liu, C., Chen, J., Liu, P., Lu, Y. and Ling, Z., 2022. A systematic spectroscopic study of laboratory synthesized manganese oxides relevant to Mars. Journal of Raman Spectroscopy, 53(3), pp.340-355.

24. Qiao, L., Head, J.W., Wilson, L., Chen, J. and Ling, Z., 2021. Mare domes in Mare Tranquillitatis: Identification, characterization, and implications for their origin. Journal of Geophysical Research: Planets, 126(9), p.e2021JE006888.

25. Qi, X., Ling, Z., Zhang, J., Chen, J., Cao, H., Liu, C., Qiao, L., Fu, X., He, Z., Xu, R. and Liu, J., 2020. Photometric normalization of chang’e-4 visible and near-infrared imaging Spectrometer datasets: A combined study of in-situ and laboratory spectral measurements. Remote Sensing, 12(19), p.3211.

26. Li, B., Ling, Z., Zhang, J., Chen, J., Ni, Y. and Liu, C., 2018. Displacement-length ratios and contractional strains of lunar wrinkle ridges in Mare Serenitatis and Mare Tranquillitatis. Journal of Structural Geology, 109, pp.27-37.

27. Li, B., Ling, Z., Zhang, J., Chen, J., Liu, C. and Bi, X., 2018. Geological mapping of lunar highland crater Lalande: Topographic configuration, morphology and cratering process. Planetary and Space Science, 151, pp.85-96.

28. Liu, C., Ling, Z., Cao, F. and Chen, J., 2017. Comparative Raman and visible near‐infrared spectroscopic studies of jarosite endmember mixtures and solid solutions relevant to Mars. Journal of Raman Spectroscopy, 48(11), pp.1676-1684.

29. Li, B., Ling, Z., Zhang, J. and Chen, J., 2017. Rock size-frequency distributions analysis at lunar landing sites based on remote sensing and in-situ imagery. Planetary and Space Science, 146, pp.30-39.

30. Li, B., Wang, X., Zhang, J., Chen, J. and Ling, Z., 2016. Lunar textural analysis based on WAC-derived kilometer-scale roughness and entropy maps. Planetary and Space Science, 125, pp.62-71.

31. Li, B., Ling, Z., Zhang, J., Chen, J., Wu, Z., Ni, Y. and Zhao, H., 2015. Texture descriptions of lunar surface derived from LOLA data: Kilometer-scale roughness and entropy maps. Planetary and Space Science, 117, pp.303-311.

32. 尹承翔, 曹海军, 付晓辉, 陈剑, 张江, 凌宗成, 2023. 嫦娥五号样品——月球遥感定量反演的新地面真值. 中国科学:物理学, 力学, 天文学, 53(3), p.239604.

33. 王颖, 丁孝忠, 韩坤英, 陈剑, 刘敬稳, 陆天启, 王俊涛, 石成龙, 金铭, 庞健峰, 2023. 基于多源遥感数据的月球薛定谔盆地及邻区地质特征和演化分析. 地学前缘, 30, https://doi.org/10.13745/j.esf.sf.2022.9.11

34. 李勃, 凌宗成, 张江, 陈剑, 孙灵芝 and 赵昊炜, 2016. 嫦娥三号着陆区月海玄武岩的年龄, 成因及地质意义. 岩石学报, 32(1), pp.19-28.

35. Liu, C., Ling, Z., Wu, Z., Zhang, J., Chen, J., Fu, X., Qiao, L., Liu, P., Li, B., Zhang, L. and Xin, Y., 2022. Aqueous alteration of the Vastitas Borealis Formation at the Tianwen-1 landing site. Communications Earth & Environment, 3(1), p.280.

36. Fu, X., Yin, C., Jolliff, B.L., Zhang, J., Chen, J., Ling, Z., Zhang, F., Liu, Y. and Zou, Y., 2022. Understanding the mineralogy and geochemistry of Chang'E-5 soil and implications for its geological significances. Icarus, 388, p.115254.

37. Qiao, L., Xu, L., Yang, Y., Xie, M., Chen, J., Fang, K. and Ling, Z., 2021. Cratering Records in the Chang'e‐5 Mare Unit: Filling the “Age Gap” of the Lunar Crater Chronology and Preparation for Its Recalibration. Geophysical Research Letters, 48(22), p.e2021GL095132.

38. Sun, L., Ling, Z., Zhang, J., Li, B., Chen, J., Wu, Z. and Liu, J., 2016. Lunar iron and optical maturity mapping: Results from partial least squares modeling of Chang'E-1 IIM data. Icarus, 280, pp.183-198.

39. Li, B., Wang, X., Zhang, J., Ling, Z., Chen, J., Wu, Z. and Ni, Y., 2016. The relative and absolute age determination of rilles in southwest Aristarchus region. Planetary and Space Science, 124, pp.84-93.

40. 姚美娟, 陈建平, 徐彬, 籍进柱 and 陈剑, 2017. 月球正面与背面的差异对比与演化分析. 地球科学与环境学报, 39(3), pp.428-438.

41. 孙灵芝, 凌宗成, 张江, 李勃 and 陈剑, 2016. 月表镁尖晶石矿物的光谱特征与遥感探测: 以第谷撞击坑为例. 中国科学: 物理学, 力学, 天文学, (2), pp.68-76.

42. Qiao, L., Hess, M., Xu, L., Wöhler, C., Head, J. W., Chen, J., Wang, Y., Bugiolacchi, R., Xiao, A., Zhang, F. and Ling, Z. 2023. Extensive lunar surface disturbance at the Chang'e-5 mission landing site: Implications for future lunar base design and construction. Journal of Geophysical Research: Planets, 128, p.e2022JE007730.

43. Lu, X., Cao, H., Ling, Z., Fu, X., Qiao, L. and Chen, J., 2021. Geomorphology, Mineralogy, and Geochronology of Mare Basalts and Non-Mare Materials around the Lunar Crisium Basin. Remote Sensing, 13(23), p.4828.

44. 李勃, 凌宗成, 张江, 武中臣, 倪宇恒 and 陈剑, 2014. “嫦娥三号着陆区月壤下伏玄武岩单元划分和充填过程研究. 地学前缘, 21(6), pp.155-164.

45. Li, B., Yue, Z., Zhang, J., Fu, X., Ling, Z., Chen, S., Chen, J. and Yao, P., 2019. High‐resolution terrain analysis for Lander safety landing and rover path planning based on lunar reconnaissance Orbiter narrow angle camera images: A case study of China's Chang'e‐4 Probe. Earth and Space Science, 6(3), pp.398-410.

46. Lu, T., Zhu, K., Chen, S., Liu, J., Ling, Z., Ding, X., Han, K., Chen, J., Cheng, W., Lei, D., Mu, Y., Li, A., Chen, J. and Ouyang, Z., 2022. The 1: 2,500,000-scale global tectonic map of the Moon. Science Bulletin, 67(19), pp.1962-1966.

47. Ji, J., Guo, D., Liu, J., Chen, S., Ling, Z., Ding, X., Han, K., Chen, J., Cheng, W., Zhu, K., Liu, J., Wang, J., Chen, J. and Ouyang, Z., 2022. The 1: 2,500,000-scale geologic map of the global Moon. Science Bulletin, 67(15), pp.1544-1548.

48. 凌宗成, 张江, 刘建忠, 李勃, 武中臣, 倪宇恒, 孙灵芝 and 陈剑, 2016. 嫦娥一号干涉成像光谱仪数据再校正与全月铁钛元素反演. 岩石学报, 32(1), pp.87-98.

49. Ling, Z., Jolliff, B.L., Wang, A., Li, C., Liu, J., Zhang, J., Li, B., Sun, L., Chen, J., Xiao, L. and Liu, J., 2015. Correlated compositional and mineralogical investigations at the Chang′ e-3 landing site. Nature Communications, 6(1), p.8880.

50. Li, B., Zhang, J., Yue, Z., Yao, P., Li, C., Chen, S., Qiao, L., Fu, X., Ling, Z., Chen, J. and Liu, S., 2020. Deriving terrain factors from high-resolution lunar images: A case study of the Mons Rümker Region. Geomorphology, 358, p.107114.

51. Wang, H.Z., Xiao, C., Shi, Q.Q., Guo, R.L., Yue, C., Xie, L.H., Zhang, J., Zhang, A.B., Wieser, M., Saito, Y., Nishino, M.N., Nowada, M., Zong, Q.G., Degeling, A.W., Tian, A.M., Fu, S.Y., Zhang, H., Chen, J., Zhang, T.X., Liu, J., Han, C.Y., Shang, W.S. and Bai, S.C., 2021. Energetic neutral atom distribution on the lunar surface and its relationship with solar wind conditions. The Astrophysical Journal Letters, 922(2), p.L41.

52. Wang, H.Z., Zhang, J., Shi, Q.Q., Saito, Y., Degeling, A.W., Rae, I.J., Zong, Q.G., Wei, Y., Liu, J., Guo, R.L., Yao, Z.H., Tian, A.M., Fu, X.H., Liu, J.Z., Ling, Z.C., Fu, S.Y., Sun, W.J., Bai, S.C., Chen, J., Yao, S.T., Zhang, H., Liu, W.L., Xia, L.D., Feng, Y.Y. and Pu, Z.Y., 2021. Earth wind as a possible exogenous source of lunar surface hydration. The Astrophysical Journal Letters, 907(2), p.L32.

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