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Solar wind-driven thermospheric winds over the Venus North Polar region

机译:太阳风驱动的热层风在金星北极地区

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Data from the neutral particle imager (NPI) on Venus Express reveals the presence of a persistent +Y (Venus Solar-Oriented) flow of Energetic Neutral Atoms (ENAs) in the Venus polar thermosphere. The overall flow morphology and altitude distribution of ENAs, solar wind H~+ (SWH~+), and ionospheric O~+ imply that SWH~+&O~+ Charge Exchange (CE) with thermosphere neutrals causes the ENA flow. A dusk-dawn and noon-midnight ENA flux asymmetry is consistent with an asymmetric CE-interaction with higher ENA fluxes in the dayside and dawn (+Y). Model ENA fluxes derived from CE between SWH~+&O~+ and a model oxygen thermosphere is consistent with NPI data. Adding energy-corrected NPI fluxes and ion fluxes gives essentially constant fluxes of ≈10~(12) part/(m~2s) in the altitude range of 200-1200 km. The energy and momentum of the 1-10 km/s ion and ENA flow, induced by solar wind forcing, should have implications for wind patterns in the polar thermosphere above 200 km.
机译:来自金星快车的中性粒子成像仪(NPI)的数据显示,金星极热圈中存在着能量中性原子(ENA)持续的+ Y(维纳斯太阳定向)流动。 ENA,太阳风H〜+(SWH〜+)和电离层O〜+的整体流动形态和高度分布表明,具有热层中性的SWH〜+&O〜+电荷交换(CE)导致ENA流动。 ENA通量黄昏和黎明至午夜的不对称与白天和黎明(+ Y)时具有较高ENA通量的不对称CE相互作用相一致。从CE得出的SWH〜+&O〜+与模型氧热层之间的ENA模型通量与NPI数据一致。在200-1200 km的海拔范围内,将经过能量校正的NPI通量和离子通量相加得出的常数通量约为≈10〜(12)份/(m〜2s)。太阳风强迫引起的1-10 km / s离子和ENA流量的能量和动量应对200 km以上极地热圈中的风型有影响。

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