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CHARGE EXCHANGE EMISSION FROM SOLAR WIND HELIUM IONS

机译:太阳风氦离子的电荷交换排放

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摘要

Charge exchange X-ray and far-ultraviolet (FUV) aurorae can provide detailed insight into the interaction between solar system plasmas. Using the two complementary experimental techniques of photon emission spectroscopy and translation energy spectroscopy, we have studied state-selective charge exchange in collisions between fully ionized helium and target gasses characteristic of cometary and planetary atmospheres (H_2O, CO_2, CO, and CH_4). The experiments were performed at velocities typical for the solar wind (200-1500 km s~(-1)). Data sets are produced that can be used for modeling the interaction of solar wind alpha particles with cometary and planetary atmospheres. These data sets are used to demonstrate the diagnostic potential of helium line emission. Existing Extreme Ultraviolet Explorer (EUVE) observations of comets Hyakutake and Hale-Bopp are analyzed in terms of solar wind and coma characteristics. The case of Hale-Bopp illustrates well the dependence of the helium line emission to the collision velocity. For Hale-Bopp, our model requires low velocities in the interaction zone. We interpret this as the effect of severe post-bow shock cooling in this extraordinary large comet.
机译:电荷交换X射线和远紫外线(FUV)极光可以提供对太阳系等离子体之间相互作用的详细了解。利用光子发射光谱法和转化能谱法的两种互补实验技术,我们研究了完全电离的氦气与彗星和行星大气(H_2O,CO_2,CO和CH_4)的目标气体之间的碰撞中的状态选择电荷交换。实验是在太阳风的典型速度(200-1500 km s〜(-1))下进行的。产生了可用于模拟太阳风α粒子与彗星和行星大气相互作用的数据集。这些数据集用于证明氦线发射的诊断潜力。根据太阳风和彗形特征分析了彗星Hyaktake和Hale-Bopp的现有极紫外探测器(EUVE)观测结果。 Hale-Bopp的情况很好地说明了氦线发射对碰撞速度的依赖性。对于Hale-Bopp,我们的模型要求相互作用区域的速度较低。我们将其解释为这枚超大彗星中严重的弓后冲击冷却效应。

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