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OSCILLATIONS IN A SUNSPOT WITH LIGHT BRIDGES

机译:带有亮桥的太阳黑子中的振荡

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The Solar Optical Telescope on board Hinode observed a sunspot (AR 11836) with two light bridges (LBs) on 2013 August 31. We analyzed a two-hour Ca II H emission intensity data set and detected strong five-minute oscillation power on both LBs and in the inner penumbra. The time-distance plot reveals that the five-minute oscillation phase does not vary significantly along the thin bridge, indicating that the oscillations are likely to originate from underneath it. The slit taken along the central axis of the wide LB exhibits a standing wave feature. However, at the center of the wide bridge, the five-minute oscillation power is found to be stronger than at its sides. Moreover, the time-distance plot across the wide bridge exhibits a herringbone pattern that indicates a counter-stream of two running waves, which originated at the bridge's sides. Thus, the five-minute oscillations on the wide bridge also resemble the properties of running penumbral waves. The five-minute oscillations are suppressed in the umbra, while the three-minute oscillations occupy all three cores of the sunspot's umbra, separated by the LBs. The three-minute oscillations were found to be in phase at both sides of the LBs. This may indicate that either LBs do not affect umbral oscillations, or that umbral oscillations at different umbral cores share the same source. It also indicates that LBs are rather shallow objects situated in the upper part of the umbra. We found that umbral flashes (UFs) follow the life cycles of umbral oscillations with much larger amplitudes. They cannot propagate across LBs. UFs dominate the three-minute oscillation power within each core; however, they do not disrupt the phase of umbral oscillation.
机译:Hinode上的太阳光学望远镜在2013年8月31日观测到一个带有两个光桥(LB)的太阳黑子(AR 11836)。我们分析了一个两小时的Ca II H发射强度数据集,并在两个LB上检测到很强的五分钟振荡功率在内部半影。时间-距离图显示,沿薄桥的五分钟振荡相位没有明显变化,这表明振荡很可能源自其下方。沿宽LB的中心轴截取的缝隙表现出驻波特征。然而,在宽桥的中心,发现五分钟的振荡动力要比其两侧的要强。此外,横跨宽桥的时间-距离图显示出人字形图案,表示来自桥侧面的两个行波的逆流。因此,宽桥上的五分钟振动也类似于奔波的半波的特性。五分钟的振荡被抑制在本影中,而三分钟的振荡则占据了黑子的本影的所有三个核心,由LB隔开。发现三分钟的振荡在LB的两侧同相。这可能表明LB不会影响本影振荡,或者在不同本影核心的本影振荡共享相同的源。这也表明LB是位于本影上部的较浅的对象。我们发现,本影闪烁(UFs)会以更大的幅度跟随本影振荡的生命周期。它们不能在LB之间传播。 UF主导着每个核心内三分钟的振荡功率。但是,它们不会破坏本影振荡的相位。

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