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首页> 外文期刊>Journal of geophysical research. Planets >Seasonal variability of the hydrogen exosphere of Mars
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Seasonal variability of the hydrogen exosphere of Mars

机译:火星氢外层的季节性变异性

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摘要

The Mars Atmosphere and Volatile EvolutioN (MAVEN) mission measures both the upstream solar wind and collisional products from energetic neutral hydrogen atoms that precipitate into the upper atmosphere after their initial formation by charge exchange with exospheric hydrogen. By computing the ratio between the densities of these populations, we derive a robust measurement of the column density of exospheric hydrogen upstream of the Martian bow shock. By comparing with Chamberlain-type model exospheres, we place new constraints on the structure and escape rates of exospheric hydrogen, derived from observations sensitive to a different and potentially complementary column from most scattered sunlight observations. Our observations provide quantitative estimates of the hydrogen exosphere with nearly complete temporal coverage, revealing order of magnitude seasonal changes in column density and a peak slightly after perihelion, approximately at southern summer solstice. The timing of this peak suggests either a lag in the response of the Martian atmosphere to solar inputs or a seasonal effect driven by lower atmosphere dynamics. The high degree of seasonal variability implied by our observations suggests that the Martian atmosphere and the thermal escape of light elements depend sensitively on solar inputs. Plain Language Summary We utilize a new technique to measure the density of hydrogen escaping into space from Mars, allowing us to observe the variability of hydrogen around Mars over a full Martian year. We find that the current escape of hydrogen from Mars varies dramatically over the Martian year, suggesting a sensitive dependence of the atmosphere and the escape of hydrogen on the input of energy from the Sun, as well as a possible influence of seasonally varying weather patterns. Understanding the present-day and historical hydrogen escape from Mars is crucial to solving the problem of how Mars was transformed from an early warm wet state to the cold dry planet we see today. Our results provide a quantitative data set with good temporal coverage which is complementary to other measurements of Martian hydrogen and which provides important new constraints on models of the Martian atmosphere.
机译:火星大气层和挥发性进化(MAVEN)任务从能量中性的中性氢原子中测量了上游太阳风和碰撞产物,这些氢原子通过与外层氢的电荷交换在初始地层后沉淀到高层大气中。通过计算这些人群的密度之间的比率,我们得出了对火星弓休克上游的外层氢的柱密度的稳健测量。通过与Chamberlain型模型外层进行比较,我们对外层氢的结构和逃逸速率放置了新的约束,这些结构和逃逸速率来自对大多数散射阳光观测的不同且潜在的互补柱敏感的观测值。我们的观察结果提供了氢外层的定量估计值,几乎完全的时间覆盖范围,揭示了柱密度的季节性变化和圆周后略微变化的季节性变化,大约在南部的夏至南部夏至。该峰的时间安排表明,火星大气对太阳能输入的反应或较低大气动力学驱动的季节性效应的滞后。我们的观察结果暗示的高度季节性变异性表明,火星大气和光元素的热逃逸敏感地取决于太阳能输入。简单的语言摘要我们利用一种新技术来测量氢的密度从火星逸出到太空中,从而使我们能够在整个火星一年中观察到火星周围氢的可变性。我们发现,在火星年,氢从火星中的当前逃脱差异很大,这表明大气的敏感依赖性和氢对能量输入太阳的逃脱,以及季节性变化的天气模式的可能影响。了解当今和历史氢从火星逃生对于解决火星如何从早期温暖的湿状态转变为我们今天看到的冷干燥星球的问题至关重要。我们的结果提供了一个定量数据集,具有良好的时间覆盖范围,该数据与火星氢的其他测量相辅相成,并为火星大气模型提供了重要的新约束。

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