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The loss of ions from Venus through the plasma wake

机译:金星通过等离子流造成的离子损失

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Venus, unlike Earth, is an extremely dry planet although both began with similar masses, distances from the Sun, and presumably water inventories. The high deuterium-to-hydrogen ratio in the venusian atmosphere relative to Earth's also indicates that the atmosphere has undergone significantly different evolution over the age of the Solar System. Present-day thermal escape is low for all atmospheric species. However, hydrogen can escape by means of collisions with hot atoms from ionospheric photochemistry, and although the bulk of O and O_2 are gravitationally bound, heavy ions have been observed to escape through interaction with the solar wind. Nevertheless, their relative rates of escape, spatial distribution, and composition could not be determined from these previous measurements. Here we report Venus Express measurements showing that the dominant escaping ions are O~+, He~+ and H~+. The escaping ions leave Venus through the plasma sheet (a central portion of the plasma wake) and in a boundary layer of the induced magnetosphere. The escape rate ratios are Q(H~+)/Q(O~+) = 1.9; Q(He~+)/Q(O~+) = 0.07. The first of these implies that the escape of H~+ and O~+, together with the estimated escape of neutral hydrogen and oxygen, currently takes place near the stoichometric ratio corresponding to water.
机译:金星与地球不同,它是一个极其干燥的行星,尽管两者的质量,距离太阳的距离以及水源都差不多。金星大气中相对于地球的高的氘氢比也表明,随着太阳系年龄的增长,大气经历了显着不同的演变。对于所有大气物种而言,当今的热逃逸率都很低。但是,氢可以通过与电离层光化学中的热原子发生碰撞而逸出,尽管大部分O和O_2是通过重力结合的,但已观察到重离子通过与太阳风的相互作用逸出。然而,无法从这些先前的测量中确定它们的相对逃逸率,空间分布和组成。在这里,我们报告Venus Express的测量结果,表明主要的逃逸离子是O〜+,He〜+和H〜+。逃逸的离子通过等离子片(等离子尾流的中央部分)并在感应磁层的边界层中离开金星。逃逸率之比为Q(H〜+)/ Q(O〜+)= 1.9; Q(He〜+)/ Q(O〜+)= 0.07。这些中的第一个暗示着H〜+和O〜+的逸出以及估计的中性氢和氧气的逸出目前发生在与水相对应的化学计量比附近。

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