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Spectral deconvolution analysis on Olivine-Orthopyroxene mixtures with simulated space weathering modifications

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摘要 Olivine and pyroxene are important mineral end-members for studying the surface material compositions of mafic bodies.The profiles of visible and near-infrared spectra of olivine-orthopyroxene mixtures systematically vary with their composition ratios.In our experiments,we combine the RELAB spectral database with new spectral data obtained from some assembled olivine-orthopyroxene mixtures.We found that the commonly-used band area ratio(BAR,Cloutis et al.)does not work well on our newly obtained spectral data.To investigate this issue,an empirical procedure based on fitted results by a modified Gaussian model is proposed to analyze the spectral curves.Following the new empirical procedure,the endmember abundances can be estimated with a 15%accuracy with some prior mineral absorption features.In addition,the mixture samples configured in our experiments are also irradiated by pulsed lasers to simulate and investigate the space weathering effects.Spectral deconvolution results confirm that low-content olivine on celestial bodies is difficult to measure and estimate.Therefore,the olivine abundance of space weathered materials may be underestimated from remote sensing data.This study may be utilized to quantify the spectral relationship of olivine-orthopyroxene mixtures and further reveal their correlation between the spectra of ordinary chondrites and silicate asteroids.
作者 韩慧杰 卢晓平 姜特 夏志浩 杨亚洲 张鹏飞 张昊 Hui-Jie Han;Xiao-Ping Lu;Te Jiang;Chih-Hao Hsia;Ya-Zhou Yang;Peng-Fei Zhang;Hao Zhang(State Key Laboratory of Lunar and Planetary Sciences,Macao University of Science and Technology,Taipa 999078,Macao,China;Planetary Science Institute,School of Earth Sciences,China University of Geosciences,Wuhan 430074,China;CNSA Macao Center for Space Exploration and Science,Taipa 999078,Macao,China;State Key Laboratory of Space Weather,National Space Science Center,Chinese Academy of Sciences,Beijing 100190,China;CAS Center for Excellence in Comparative Planetology,Hefei 230026,China)
出处 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2021年第5期255-273,共19页 天文和天体物理学研究(英文版)
基金 supported by the Foundation of the State Key Laboratory of Lunar and Planetary Sciences, Macao University of Science and Technology, Macao, China funded by The Science and Technology Development Fund, Macao SAR (No. 0073/2019/A2) the support from The Science and Technology Development Fund, Macao SAR (No. 0007/2019/A) supported by Beijing Municipal Science and Technology Commission (No. Z181100002918003) supported by the National Natural Science Foundation of China (NSFC, Nos. 11773023, 11941001, 12073024 and U1631124)
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