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首页> 外文期刊>Journal of geophysical research. Planets >Global inventory and characterization of pyroclastic deposits on Mercury: New insights into pyroclastic activity from MESSENGER orbital data
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Global inventory and characterization of pyroclastic deposits on Mercury: New insights into pyroclastic activity from MESSENGER orbital data

机译:全球库存和汞上的火山碎屑沉积物的表征:从信使轨道数据中对火山塑性活性的新见解

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摘要

We present new observations of pyroclastic deposits on the surface of Mercury from data acquired during the orbital phase of the MErcury Surface, Space ENvironment, GEochemistry, and Ranging (MESSENGER) mission. The global analysis of pyroclastic deposits brings the total number of such identified features from 40 to 51. Some 90% of pyroclastic deposits are found within impact craters. The locations of most pyroclastic deposits appear to be unrelated to regional smooth plains deposits, except some deposits cluster around the margins of smooth plains, similar to the relation between many lunar pyroclastic deposits and lunar maria. A survey of the degradation state of the impact craters that host pyroclastic deposits suggests that pyroclastic activity occurred on Mercury over a prolonged interval. Measurements of surface reflectance by MESSENGER indicate that the pyroclastic deposits are spectrally distinct from their surrounding terrain, with higher reflectance values, redder (i.e., steeper) spectral slopes, and a downturn at wavelengths shorter than ~400nm (i.e., in the near-ultraviolet region of the spectrum). Three possible causes for these distinctive characteristics include differences in transition metal content, physical properties (e.g., grain size), or degree of space weathering from average surface material on Mercury. The strength of the near-ultraviolet downturn varies among spectra of pyroclastic deposits and is correlated with reflectance at visible wavelengths. We suggest that this interdeposit variability in reflectance spectra is the result of either variable amounts of mixing of the pyroclastic deposits with underlying material or inherent differences in chemical and physical properties among pyroclastic deposits.
机译:我们从汞表面,太空环境,地球化学和范围(Messenger)任务中获得的数据中获得了汞表面上的火山碎屑沉积物的新观察结果。对火山碎屑沉积物的全球分析带来了40至51的此类识别特征的总数。在撞击坑中发现了大约90%的火山塑料沉积物。大多数火山碎屑沉积物的位置似乎与区域光滑的平原沉积物无关,除了某些沉积物聚集在光滑平原边缘周围,类似于许多月球弹性碎屑沉积物与月球玛丽亚之间的关系。对宿主火山碎屑沉积物的撞击陨石坑的降解状态的调查表明,在长时间的间隔内,汞发生了火山碎屑活性。通过使者对表面反射率的测量表明,火山碎屑沉积物在光谱上与其周围的地形不同,具有较高的反射率值,红色(即陡峭)频谱斜率,并且在短波长下的衰退大于〜400nm(即,在近乎卵形的叶片中,频谱区域)。这些独特特征的三个可能原因包括过渡金属含量,物理特性(例如晶粒尺寸)或汞平均表面材料风化的空间程度的差异。近粉状物的衰退强度在火山碎屑沉积光谱之间变化,并且与可见波长处的反射率相关。我们建议,反射光谱中的这种沉积变异性是火山碎屑沉积物与基础材料的混合量变化的结果,或者是在火山碎屑沉积物中化学和物理性质的固有差异的结果。

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