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Evolution of active region outflows throughout an active region lifetime

机译:整个活动区域生命周期中活动区域流出的演变

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Context. We have shown previously that SOHO/UVCS data allow us to detect active region (AR) outflows at coronal altitudes higher than those reached by other instrumentation. These outflows are thought to be a component of the slow solar wind. Aims. Our purpose is to study the evolution of the outflows in the intermediate corona from AR 8100, from the time the AR first forms until it dissolves, after several transits at the solar limb. Methods. Data acquired by SOHO/UVCS at the time of the AR limb transits, at medium latitudes and at altitudes ranging from 1.5 to 2.3 R _(⊙) , were used to infer the physical properties of the outflows through the AR evolution. To this end, we applied the Doppler dimming technique to UVCS spectra. These spectra include the H i Ly α line and the O vi doublet lines at 1031.9 and 1037.6 ?. Results. Plasma speeds and electron densities of the outflows were inferred over several rotations of the Sun. AR outflows are present in the newly born AR and persist throughout the entire AR life. Moreover, we found two types of outflows at different latitudes, both possibly originating in the same negative polarity area of the AR. We also analyzed the behavior of the Si xii 520 ? line along the UVCS slit in an attempt to reveal changes in the Si abundance when different regions are traversed. Although we found some evidence for a Si enrichment in the AR outflows, alternative interpretations are also plausible. Conclusions. Our results demonstrate that outflows from ARs are detectable in the intermediate corona throughout the whole AR lifetime. This confirms that outflows contribute to the slow wind.
机译:上下文。先前我们已经证明,SOHO / UVCS数据使我们能够检测到日冕高度上的活动区域(AR)流出量高于其他仪器所达到的水平。这些流出被认为是缓慢的太阳风的一部分。目的我们的目的是研究从AR 8100到太阳肢体经过几次跃迁之后,AR 8100从中间电晕流出的演变。方法。 SOHO / UVCS在AR肢体过渡时,中纬度和1.5至2.3 R _(⊙)的海拔高度获取的数据被用来推断通过AR演化的流出物的物理特性。为此,我们将多普勒调光技术应用于UVCS光谱。这些光谱包括在1031.9和1037.6?处的H i Lyα线和O vi双峰线。结果。通过太阳的几次旋转可以推断出流出的等离子体速度和电子密度。 AR流出存在于新生的AR中,并在整个AR生命周期中持续存在。此外,我们发现在不同纬度的两种类型的流出物,都可能起源于AR的同一负极性区域。我们还分析了Si xii 520的行为。沿着UVCS狭缝绘制一条线,以试图在横穿不同区域时揭示Si丰度的变化。尽管我们发现了AR流出中有Si富集的证据,但其他解释也是可行的。结论。我们的结果表明,在整个AR寿命中,可在中间电晕中检测到来自AR的流出。这证实了流出导致了慢风。

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