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Modelling of Mercury’s surface composition and remote detection from the orbit with the BepiColombo Mercury Planetary Orbiter

机译:BepiColombo Mercury行星轨道器对水星的表面成分进行建模并从轨道进行远程探测

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摘要

It can be assumed that the composition of Mercury’s thin gas envelope (exosphere) is related to thecomposition of the planets crustal materials. If this relationship is true, then inferences regarding the bulkchemistry of the planet might be made from a thorough exospheric study. The most vexing of allunsolved problems is the uncertainty in the source of each component. Historically, it has been believedthat H and He come primarily from the solar wind, while Na and K originate from volatilized materialspartitioned between Mercury’s crust and meteoritic impactors. The processes that eject atoms andmolecules into the exosphere of Mercury are generally considered to be thermal vaporization, photonstimulateddesorption (PSD), impact vaporization, and ion sputtering. Each of these processes has its owntemporal and spatial dependence. The exosphere is strongly influenced by Mercury’s highly ellipticalorbit and rapid orbital speed. As a consequence the surface undergoes large fluctuations in temperatureand experiences differences of insolation with longitude. We will discuss these processes but focus moreon the expected surface composition and solar wind particle sputtering which releases material like Caand other elements from the surface minerals and discuss the relevance of composition modelling
机译:可以假定,水星的薄气层(大气层)的组成与行星地壳物质的组成有关。如果这种关系是正确的,则可以通过彻底的外层大气研究得出有关行星体化学的推论。所有未解决问题中最令人困扰的是每个组件来源的不确定性。从历史上看,人们一直认为氢和氦主要来自太阳风,而钠和钾则来自于水星地壳和陨石撞击物之间的挥发物质。将原子和分子喷射到水银气圈的过程通常被认为是热蒸发,光刺激解吸(PSD),冲击蒸发和离子溅射。这些过程中的每一个都有其自身的时间和空间依赖性。水星的高度椭圆轨道和快速的轨道速度极大地影响了系外层。结果,表面经历了很大的温度波动,并经历了经度的日照差异。我们将讨论这些过程,但将重点放在预期的表面成分和太阳风粒子溅射上,后者会从表面矿物中释放出诸如Caand等元素的物质,并讨论成分建模的相关性

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