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Loss rates and time scales for sodium at Mercury

机译:水银钠的损失率和时间尺度

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摘要

The time scales and loss rates for sodium in the exosphere of Mercury are studied here. Sodium comes from release processes occurring at the planetary surface; the amount of surface sodium that is available for release (mostly through thermal- or photon-stimulated desorption) is limited. Loss processes deplete the surface concentration of sodium, which is continuously refilled by diffusion from the interior of regolith grains or by chemical sputtering. Ejected sodium particles may either escape the gravity, also aided by the radiation pressure acceleration, or be photoionized, or fall back onto the surface. Falling particles may either stick to the surface or bounce. A Monte Carlo model, simulating all these processes, is used to obtain the exosphere densities, the global loss rates at different true anomaly angles, and typical time scales for small-term variations, taking into account planet's orbit and rotation speed. Assuming an impulsive event, which causes the enhancement of sodium in the exosphere, the model gives the time scales for the exosphere to recover to a steady-state condition. It is found that time scales go from one or two hour (close to perihelion) to half day (close to aphelion). The escape probability ranges from 20% at perihelion and aphelion up to 40% at true anomaly angles of about 60° and 300°.
机译:在这里研究了水银气圈中钠的时间尺度和损失率。钠来自发生在行星表面的释放过程。可释放的表面钠的量(主要是通过热或光子刺激的脱附)受到限制。损失过程耗尽了钠的表面浓度,钠的表面浓度通过从重碎石颗粒内部扩散或通过化学溅射连续补充。射出的钠粒子可能逃避重力,也可能受到辐射压力加速的辅助,或者被光电离,或者掉回到表面上。掉落的颗粒可能粘在表面或弹起。模拟所有这些过程的蒙特卡洛模型用于获得大气圈密度,不同真实异常角度下的总体损失率以及短期变化的典型时间尺度,其中考虑了行星的轨道和自转速度。假设一个冲动事件引起了大气层中钠的增加,该模型给出了大气层恢复到稳态状态的时间尺度。发现时间范围从一两个小时(接近近日点)到半天(接近蚜虫)。逃生概率范围从近日点和顶视点的20%到大约60°和300°的真实异常角的40%。

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