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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >SWAN/SOHO Lyman-α Mapping: The Hydrogen Geocorona ExtendsWell Beyond the Moon
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SWAN/SOHO Lyman-α Mapping: The Hydrogen Geocorona ExtendsWell Beyond the Moon

机译:天鹅/ SOHO莱曼-α映射:氢地冕ExtendsWell之外的月球

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The Earth's hydrogen exosphere Lyman-α radiation was mapped with the Solar Wind Anisotropies/Solar and Heliospheric Observatory (SWAN/SOHO) instrument in January 1996, 1997, and 1998 (low solar activity). The use of a hydrogen absorption cell allowed to disentangle the interplanetary emission from the geocoronal one and to assign the absorbed signal almost entirely to the geocorona. The geocorona was found to extend at least up to 100 Earth radii (R_E) with an intensity of 5 Rayleigh, an unprecedented distance well exceeding the recent results of Lyman Alpha Imaging Camera (LAICA) imager (~50 R_E), and encompassing the orbit of the Moon (~60 R_E). We developed a numerical kinetic model of the hydrogen atoms distribution in the exosphere, which includes the solar Lyman-α radiation pressure and the ionization. The radiation pressure compresses the H exosphere on the dayside, producing a bulge of H density between 3 and 20 R_E, which fits observed intensities very well. The SWAN Lyman-α distribution of intensity was compared both to LAICA (2015) and to Orbiting Geophysical Observatory number 5 (1968) measurements. Integrated H densities of SWAN at a tangent distance of 7 R_E are larger than LAICA/Orbiting Geophysical Observatory number 5 by factors 1.1-2.5, while we should expect a stronger effect of the radiation pressure at solar max. We discuss the possible role of H atoms in satellite orbits to explain this apparent contradiction. An onion-peeling technique is used to retrieve hydrogen number density in the exosphere for the three SWAN observations. They show an excess of density versus models at large distances, which is likely due to nonthermal atoms (not in the model).
机译:地球的氢外逸层莱曼-α辐射是映射与太阳风各向异性/太阳能吗格林威治天文台(天鹅/ SOHO)仪器在1996年1月,1997年和1998年(低太阳活动)。细胞可以解开星际发射的geocoronal分配信号几乎完全吸收地冕。至少到100年地球半径(R_E)了强度5瑞利,前所未有距离远远超过了最近的结果莱曼α成像摄像机(LAICA)成像仪(~ 50R_E),包括月球的轨道(~ 60R_E)。外逸层中的氢原子分布,其中包括太阳能莱曼-α辐射压力和电离。上的H外逸层压缩的压力的光面,产生膨胀的H 3之间的密度和20 R_E适合观察强度非常好。比较双方LAICA(2015)和轨道天文台5号(1968)测量。切线距离7 R_E大于LAICA /轨道天文台数字51.1 - -2.5因素,而我们应该期望更强的辐射压力的影响太阳能马克斯。原子在卫星轨道来解释这一点明显的矛盾。技术是用于检索氢数量外逸层密度的三个天鹅观察。在很远的距离上与模型,这是可能的由于非热能的原子模型中(不)。

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