红外与激光工程, 2020, 49 (5): 20190460, 网络出版: 2020-08-17  

嫦娥四号着陆点原位高光谱的太空风化研究

Study on space weathering of Chang′e-4 landing site by in situ spectra
作者单位
1 南京航空航天大学 航天学院,江苏 南京 210016
2 中国科学院紫金山天文台,江苏 南京 210034
引用该论文

王振超, 柳稼航, 盛庆红, 吴昀昭. 嫦娥四号着陆点原位高光谱的太空风化研究[J]. 红外与激光工程, 2020, 49(5): 20190460.

Zhenchao Wang, Jiahang Liu, Qinghong Sheng, Yunzhao Wu. Study on space weathering of Chang′e-4 landing site by in situ spectra[J]. Infrared and Laser Engineering, 2020, 49(5): 20190460.

参考文献

[1] Hapke B. They of Reflectance Emittance Spectroscopy[M]. 2nd ed. Cambridge: Cambridge University Press, 2012.

[2] Fischer E M, Pieters C M. Remote determination of exposure degree and iron concentration of lunar soils using VIS-NIR spectroscopic methods[J]. Icarus, 1994, 111: 475-488.

[3] Lucey P G, Taylor G J, Malaret E. Abundance and distribution of iron on the Moon[J]. Science, 1995, 268(5214): 1150-1153.

[4] Hapke B. Space weathering from Mercury to the asteroid belt[J]. J Geophys Res, 2001, 106: 10039-10073.

[5] Mris R V. igins size distribution of metallic iron particles in the lunar regolith[C]Lunar Pla Sci Conf, 1980: 16971712.

[6] Liu Dawei, Li Lin, Sun Ying. An improved radiative transfer model for estimating mineral abundance of immature and mature lunar soils[J]. Icarus, 2015, 253: 40-50.

[7] Wang Zhenchao, Wu Yunzhao, Blewett D T. Submicroscopic metallic iron inlunar soils estimated from the in situ spectra of the Chang’E-3 mission[J]. Geophys Res Lett, 2017, 44(3485): 3492.

[8] Fu Xiaohui, Zou Yongliao, Zheng Yongchun. Space weathering processes and effects on the Moon[J]. Chin J Space Sci, 2011, 31(6): 705-715.

[9] Zhao Zhe, Zhou Ping, Yan Bokun. Spectra simulation of lunar regolith based on the Hapke radiative transfer model. Front[J]. Earth Sci, 2016, 23(3): 266-278.

[10] Li Chunlai, Wang Zhendong, Xu Rui. The scientific information model of Chang’e-4 visible and near-IR imaging spectrometer (VNIS) and in-flight verification[J]. Sensors, 2019, 19(12): 2806.

[11] Wu Yunzhao, Hapke B. Spectroscopic observations of the Moon at the lunar surface[J]. Earth Planet Sci Lett, 2018, 484: 145-153.

[12] Wu Yunzhao, Wang Zhenchao, Cai Wei. The absolute reflectance and new calibration site of the moon[J]. The Astronomical Journal, 2018, 155(5): 213.

[13] Hapke B. Bidirectional reflectance spectroscopy: 1. Theory[J]. J Geophys Res, 1981, 86: 3039-3054.

[14] Bowell E, Hapke B, Domingue D, et al. Applications of Photometric Models to Asteroids[M]. 2nd ed. Arizona: University of Arizona Press, 1989.

[15] Mustard J, Pieters C. Photometric phase functions of common geologic minerals and applications to quantitative analysis of mineral mixture reflectance spectra[J]. Geophys Res, 1989, 94(13): 619-634.

[16] Mckay D S, Cooper B L, Riofrio L M. New measurements of the particle size distribution of Apollo 11 lunar soil[C]Lunar Pla Sci Conf, 2009.

[17] Paquin R A. Hbook of Optics[M]. New Yk: McGrawHill, Inc,1995.

[18] Houston W N, Mitchell J K, Carrier III W D. Lunar soil density posity[C] Proc Lunar Pla Sci Conf, 1974: 23612364.

[19] Askel D R, Phule P P. The Science Engineering of Materials[M]. 4 th ed. USA: BrooksCole PublishingThompson Learning, 2003.

[20] Wu Yunzhao, Xue Bin, Zhao Baochang. Global estimates of lunar iron and titanium contents from the Chang’ E-1 IIM data[J]. J Geophys Res, 2012, 117: E02001.

王振超, 柳稼航, 盛庆红, 吴昀昭. 嫦娥四号着陆点原位高光谱的太空风化研究[J]. 红外与激光工程, 2020, 49(5): 20190460. Zhenchao Wang, Jiahang Liu, Qinghong Sheng, Yunzhao Wu. Study on space weathering of Chang′e-4 landing site by in situ spectra[J]. Infrared and Laser Engineering, 2020, 49(5): 20190460.

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