论文标题

欧罗巴的地表水冰结晶度以及素质和水合物组成之间的相关性

Europa's Surface Water-ice Crystallinity and Correlations between Lineae and Hydrate Composition

论文作者

Berdis, Jodi R., Murphy, James R., Chanover, Nancy J.

论文摘要

欧罗巴的表面成分和冰要发活性的证据可以洞悉地下海洋的性质和组成,从而评估其潜在的可居住性。揭示表面加工和地下活性的一种有希望的途径是在表面上观察到的晶体和无定形水冰的相对部分,这些水冰是受温度,充电颗粒轰击,蒸气沉积和冰冷的活性影响的。仅由热物理和粒子通量建模就无法再现在欧罗巴领先半球上观察到的结晶度,这表明可能存在影响表面的其他过程。我们对伽利略近红外映射光谱仪(NIMS)的高光谱图像群进行了光谱混合物分析,以确定表面结晶度如何受到高空间分辨率量表的物理处理的影响。我们专门针对两个图像立方体,即靠近赤道的15E015,靠近南极的17E009,两者都在领先的半球上。我们进行了非负平方的光谱混合物分析,以揭示表面的非冰冰组成和水冰结晶度。我们发现无定形的水冰占据了赤道和南极的光谱。我们估计15E015 NIMS立方体内的平均结晶度约为35%,在17E009 NIMS Cube内的平均结晶度约为15%,这与地面光谱镜衍生的结晶性一致。我们还鉴定了硫酸镁,氯化镁和用线虫和山脊的水合硫酸的相关性,这可能提供了通过上下地下材料进行表面加工的证据。

Europa's surface composition and evidence for cryovolcanic activity can provide insight into the properties and composition of the subsurface ocean, allowing the evaluation of its potential habitability. One promising avenue for revealing the surface processing and subsurface activity are the relative fractions of crystalline and amorphous water-ice observed on the surface, which are influenced by temperature, charged particle bombardment, vapor deposition, and cryovolcanic activity. The crystallinity observed on Europa's leading hemisphere cannot be reproduced by thermophysical and particle flux modeling alone, indicating that there may be additional processes influencing the surface. We performed a spectral mixture analysis on hyperspectral image cubes from the Galileo Near-Infrared Mapping Spectrometer (NIMS) to identify how surface crystallinity is influenced by physical processing at a high spatial resolution scale. We focus specifically on two image cubes, 15e015 closer to the equator and 17e009 closer to the south pole, both on the leading hemisphere. We performed a nonnegative least-squares spectral mixture analysis to reveal both the non-ice composition and the water-ice crystallinity of the surface. We found that amorphous water-ice dominates the spectrum at the equator and the south pole. We estimated a mean crystallinity of ~35% within the 15e015 NIMS cube and a mean crystallinity of ~15% within the 17e009 NIMS cube, which is consistent with ground-based spectroscopically derived crystallinities. We also identified a correlation of magnesium sulfate, magnesium chloride, and hydrated sulfuric acid with lineae and ridges, which may provide evidence for surface processing by upwelling subsurface material.

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