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Atmospheric loss from the dayside open polar region and its dependence on geomagnetic activity: implications for atmospheric escape on evolutionary timescales

机译:日间开放极地地区的大气损失及其对地磁活动的依赖性:大气逸出对进化时间尺度的影响

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We have investigated the total O+ escape rate from the dayside open polar region and its dependence on geomagnetic activity, specifically Kp. Two different escape routes of magnetospheric plasma into the solar wind, the plasma mantle, and the high-latitude dayside magnetosheath have been investigated separately. The flux of O+ in the plasma mantle is sufficiently fast to subsequently escape further down the magnetotail passing the neutral point, and it is nearly 3 times larger than that in the dayside magnetosheath. The contribution from the plasma mantle route is estimated as similar to 3.9 x 10(24) exp(0.45Kp) [s(-1)] with a 1 to 2 order of magnitude range for a given geomagnetic activity condition. The extrapolation of this result, including escape via the dayside magnetosheath, indicates an average O+ escape of 3 x 10(26) s(-1) for the most extreme geomagnetic storms. Assuming that the range is mainly caused by the solar EUV level, which was also larger in the past, the average O+ escape could have reached 10(27-28) s(-1) a few billion years ago. Integration over time suggests a total oxygen escape from ancient times until the present roughly equal to the atmospheric oxygen content today.
机译:我们已经研究了从白天开放的极地区域中总O +逸出率及其对地磁活动的依赖性,特别是Kp。磁层大气等离子体进入太阳风的两种不同逃逸途径,等离子地幔和高纬度日间磁石场已被分别研究。等离子体幔中的O +通量足够快,以至于随后在通过中性点的磁尾处进一步逸出,并且比日间磁石场的通量大将近3倍。对于给定的地磁活动条件,等离子体地幔路径的贡献估计与3.9 x 10(24)exp(0.45Kp)[s(-1)]相似,幅度范围为1到2个数量级。该结果的推断(包括通过日间磁石场逃逸)表明,对于最极端的地磁风暴,平均O +逃逸率为3 x 10(26)s(-1)。假设范围主要是由太阳EUV水平引起的,该水平过去也较大,那么数十亿年前,平均O +逸出量可能已达到10(27-28)s(-1)。随着时间的推移,积分表明从古代到现在的总氧气逸出量大致等于今天的大气氧气含量。

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