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Localized Ionization Hypothesis for Transient Ionospheric Layers

机译:局部电离为瞬态假说电离层层

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The persistent two-peaked vertical structure of the Martian ionosphere is created by extreme and far ultraviolet radiation whose energies, respectively, determine their ionization altitude. A third low-altitude transient layer (previously referred to as M3 or Mm) has been observed by radio occultation techniques and attributed to meteor ablation. However, recent remote sensing and in situ observations disfavor a meteoric origin. Here we propose an alternative hypothesis for these apparent layers associated with impact ionization from penetrating solar wind ions, previously observed as proton aurora. Localized ionization, occurring nonglobally at a given altitude range, breaks the symmetry assumed by the radio occultation technique, and creates electron layers apparently lower in the ionosphere than their true altitude. This may occur when the upstream bow shock is altered by a radial interplanetary magnetic field configuration, which allows the solar wind to penetrate directly into the thermosphere. This localized ionization hypothesis provides an explanation for apparent layers' wide variation in heights and their transient behavior. Moreover, this hypothesis is testable with new observations by the Mars Atmospheric and Volatile EvolutioN Radio Occultation Science Experiment in future Mars years. This hypothesis has implications for the ionospheres of Venus and Titan, where similar transient layers have been observed.
机译:持久two-peaked垂直结构火星电离层是由极端的和远紫外辐射的能量,分别确定其电离高度。(以前称为M3或毫米)无线电掩星技术和观察到归因于流星消融。遥感和原位观测失宠传奇色彩的来源。假设这些明显层相关碰撞电离与渗透太阳能离子风,以前观察到的质子极光。局部电离,nonglobally发生鉴于高度范围,打破了对称假设无线电掩星技术,并创建电子层明显下降电离层比他们真正的高度。上游弓形激波时发生改变的径向行星际磁场配置,它允许太阳风直接穿透到热大气层。局部电离假说提供了一个解释明显层的广泛变异在高度和瞬态行为。此外,这种假设是可测试的新观察火星大气与挥发物进化无线电掩星科学实验未来的火星。金星和电离层的影响泰坦,类似的过渡层观察到。

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