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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Interplanetary hydrogen absolute ionization rates: Retrieving the solar wind mass flux latitude and cycle dependence with SWAN/SOHO maps
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Interplanetary hydrogen absolute ionization rates: Retrieving the solar wind mass flux latitude and cycle dependence with SWAN/SOHO maps

机译:行星际氢绝对电离率:利用SWAN / SOHO映射检索太阳风质量通量纬度和周期依赖性

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摘要

We present results of the total hydrogen ionization rate obtained from the inversion of almost 10 years of full-sky maps of the interplanetary Lyman α background measured by the SWAN instrument on SOHO. Thanks to a new estimate of the absolute calibration of the SWAN instrument and its variation during the 10 years of operation of SOHO, we are able to derive absolute values of the ionization rate as well as its latitudinal dependence. We show how the anisotropy of the ionization rate changes from solar minimum to solar maximum. At solar maximum, the so-called ionization groove has completely disappeared and the ionizing fluxes are the same at all heliographic latitudes. We find that the hydrogen ionization cavity which surrounds the Sun increases in size with solar activity. This is evidenced by the low IP Lyman α intensities measured during and after the solar maximum. Our model calculation also shows that the increased radiation pressure is not sufficient to explain the larger cavity observed at solar maximum. We find also that ionization rates derived from in situ solar wind measurements do agree with the SWAN results at solar minimum but are significantly smaller at solar maximum. Derived in situ ionization rates do not show the solar cycle dependence we see from the SWAN data. In conclusion, we discuss possible explanations for this discrepancy.
机译:我们介绍了通过SHO仪器在SOHO上测量的近10年行星际Lymanα背景全天空图的反演获得的总氢离子化率的结果。由于对SWAN仪器的绝对校准及其在SOHO运行10年期间的变化进行了新的估算,我们能够得出电离速率的绝对值及其纬度依赖性。我们展示了电离率的各向异性如何从最小太阳变化到最大太阳。在太阳最大值时,所谓的电离槽已经完全消失,并且在所有的纬度纬度上,电离通量都相同。我们发现,围绕太阳的氢电离腔随太阳活动而增大。这可以通过日照最大值期间和之后测得的低IP Lymanα强度来证明。我们的模型计算还表明,增加的辐射压力不足以解释在太阳最大时观察到的较大空腔。我们还发现,从原位太阳风测量得出的电离速率与太阳最小时的SWAN结果一致,但在太阳最大时则显着较小。我们从SWAN数据中得出的原位电离速率并未显示出太阳周期依赖性。总之,我们讨论了这种差异的可能解释。

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