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Cloud and Gas Ionisation in Atmosphere of Gas-Giant Planets

机译:气体巨大行星大气中的云和气体电离

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The steady increase of the sample of know extrasolar planets broadens our knowledge and at the same time, reveals our lack of understanding. Habitability is a wide expression, needing planet formation theory and microphysics of cloud formation at the same time. The habitability of a planet depends, amongst other things, on how much radiation reached the ground and how much of potentially dangerous radiation is absorbed on the way through the atmosphere. For this, we need to understand cloud formation and it's impact on the atmosphere. We have studied the formation of mineral clouds on planetary atmospheres by a kinetic approach which allows us to predict the size distribution and material composition of the cloud particles. With these results we show that mineral cloud particles can be electrically charged and at which point inside a cloud charge separation will cause an electric field breakdown. Such streamer processes result in an extreme increase of the local number of free charges. Given the strong magnetic field in Brown Dwarfs and maybe in giant gas planets, these charges will than be accelerated upward out of the atmosphere where they become detectable as radio emission.
机译:知识外源行星样本的稳定增加拓宽了我们的知识,同时揭示了我们缺乏理解。适用性是一种宽的表达,需要行星形成理论和云层的微生物组织同时。行星的居住地在其他方面取决于辐射到达地面,以及在通过大气的方式吸收了多少潜在危险的辐射。为此,我们需要了解云层,它对大气影响。我们已经通过动力学方法研究了行星氛围的矿物云的形成,这使我们能够预测云颗粒的尺寸分布和材料组成。通过这些结果,我们显示矿物云颗粒可以电荷,并且在云电荷分离内部的点将导致电场击穿。这种流媒体过程导致局部空闲费用的极端增加。鉴于棕色矮星的强磁场,也许在巨气行星中,这些电荷通常不会从大气中向上加速,在那里它们可检测到无线电发射。

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