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Supersonic Magnetic Flows in the Quiet Sun Observed with SUNRISE/IMaX

机译:在宁静的阳光下观察到日出/ imax的超音速磁流

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In this contribution we describe some recent observations of high-speed magnetized flows in the quiet Sun granulation. These observations were carried out with the Imaging Magnetograph eXperiment (IMaX) onboard the stratospheric balloon SUNRISE, and possess an unprecedented spatial resolution and temporal cadence. These flows were identified as highly shifted circular polarization (Stokes V) signals. We estimate the LOS velocity responsible for these shifts to be larger than 6 km s~(-1), and therefore we refer to them as supersonic magnetic flows. The average lifetime of the detected events is 81.3 s and they occupy an average area of about 23 000 km~2. Most of the events occur within granular cells and correspond therefore to upflows. However some others occur in intergranular lanes or bear no clear relation to the convective velocity pattern. We analyze a number of representative examples and discuss them in terms of magnetic loops, reconnection events, and convective collapse.
机译:在这一贡献中,我们描述了最近在安静的太阳造粒中的高速磁化流的一些观察结果。这些观察结果与成像磁力谱图实验(IMAX)进行了平流层气球日出,并具有前所未有的空间分辨率和颞录。这些流量被识别为高度移位的圆极化(Stokes V)信号。我们估计负责这些换档的LOS速度大于6km S〜(-1),因此我们将它们称为超音速磁流。检测到的事件的平均寿命为81.3秒,占据约23 000公里〜2的平均面积。大多数事件发生在粒状细胞内,因此对应于upflows。然而,一些其他人在晶间通道中发生或与对流速度模式没有明确的关系。我们分析了许多代表性示例,并根据磁回路,重新连接事件和对流崩溃讨论它们。

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