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ELEMENTAL ABUNDANCES IN THE FAST SOLAR WIND EMANATING FROM CHROMOSPHERIC FUNNELS

机译:彩色漏斗中快速风中的元素丰度

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We carry out a model study to determine whether a funnel-type flow geometry in the solar wind source region leads to sufficiently fast hydrogen flow to offset heavy element gravitational settling and can thus explain why solar wind abundances are not much smaller than photospheric abundances. We find that high first ionization potential (FIP) elements are more susceptible to gravitational settling than low-FIP elements, which are pulled up by Coulomb drag from protons, and hence the settling is more sensitive to the charge state of the elements than to their mass. Abundances at the top of the chromosphere, and hence solar wind abundances, can change by many orders of magnitude when the funnel areal expansion factor is changed by a small amount. The observed solar wind neon abundance provides the most severe constraint on the expansion, requiring a total flux tube expansion factor of at least 30-40.
机译:我们进行了模型研究,以确定太阳风源区域中的漏斗型流动几何形状是否导致足够快速的氢流来抵消重元素的重力沉降,从而可以解释为什么太阳风的丰度不比光球丰度小很多。我们发现,高第一电离势(FIP)元素比低FIP元素更容易受到重力沉降,低FIP元素受质子的库仑​​拖曳作用而拉动,因此沉降对元素的电荷状态比对其电荷更敏感。质量当漏斗的面积膨胀因子发生少量变化时,色球层顶部的丰度以及太阳风的丰度可能会变化许多数量级。观测到的太阳风氖丰度对膨胀提供了最严格的限制,要求总通量管膨胀系数至少为30-40。

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