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首页> 外文期刊>Journal of geophysical research. Planets >Solar control of sodium escape from Io
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Solar control of sodium escape from Io

机译:钠从IO逃脱的太阳能控制

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摘要

We report ground-based spectroscopic observations of the Io sodium cloud before and after eclipse by Jupiter, in a search for possible effects of sunlight on the total atomic sodium content in Io's exosphere. These observations test the importance of the Sun in maintaining the supply of atoms from the thicker atmosphere, which lies close to the surface, to the thinner,more extended, sodiumcloud.We performed ground-based spectroscopy of the sodium doublet at 589 nm with a high-resolution échelle spectrograph on the Italian National Telescope Galileo on La Palma Island. We find that the total atomic sodium content immediately after eclipse falls by a factor of ~4 during eclipse and recovers to preeclipse values on a timescale of ~5 h. We evaluate potential causes of the precipitous drop including condensation of the atmosphere, collapse of the ionosphere, and changes in atmospheric chemistry. We conclude that most plausible cause of the drop in atomic sodium production is the interruption of photodissociation of sodium-bearing molecules during eclipse. We discuss further implications of this change in atmospheric chemistry.
机译:我们报告了木星在日食之前和之后对IO钠云的地面光谱观测,以寻找阳光对IO Exosphere中原子钠含量的可能影响。这些观察结果测试了太阳在保持较厚的大气中的原子供应方面的重要性,该气氛靠近地面,较薄,更延伸,更延伸,钠云。我们在589 nm处进行了钠双线的地面光谱法La Palma Island的意大利国家望远镜Galileo上的高分辨率Échelle光谱仪。我们发现,日食后立即将总原子钠含量下降了约4倍,并在〜5 h的时间尺度上恢复到预分解值。我们评估了急剧下降的潜在原因,包括大气的凝结,电离层的崩溃以及大气化学的变化。我们得出的结论是,原子钠产生下降的最合理的原因是日食期间含钠分子的光解异位的中断。我们讨论了这种大气化学变化的进一步含义。

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