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A Coherence-Based Approach for Tracking Waves in the Solar Corona

机译:基于相干性的日冕电波跟踪方法

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We consider the problem of automatically (and robustly) isolating and extracting information about waves and oscillations observed in EUV image sequences of the solar corona with a view to near real-time application to data from the Atmospheric Imaging Array (AIA) on the Solar Dynamics Observatory (SDO). We find that a simple coherence/travel-time based approach detects and provides a wealth of information on transverse and longitudinal wave phenomena in the test sequences provided by the Transition Region and Coronal Explorer (TRACE). The results of the search are pruned (based on diagnostic errors) to minimize false-detections such that the remainder provides robust measurements of waves in the solar corona, with the calculated propagation speed allowing automated distinction between various wave modes. In this paper we discuss the technique, present results on the TRACE test sequences, and describe how our method can be used to automatically process the enormous flow of data (≈1 Tb day−1) that will be provided by SDO/AIA.
机译:我们考虑自动(鲁棒地)隔离和提取有关在日冕的EUV图像序列中观察到的波和振荡的信息的问题,以期接近实时地应用来自太阳动力学的大气成像阵列(AIA)的数据天文台(SDO)。我们发现一种简单的基于相干/旅行时间的方法可以检测过渡区域和日冕探测仪(TRACE)提供的测试序列中的横向和纵向波现象并提供大量信息。修剪搜索结果(基于诊断错误)以最大程度地减少错误检测,从而使其余部分能够可靠地测量日冕中的波,并通过计算出的传播速度自动区分各种波模式。在本文中,我们将讨论该技术,并在TRACE测试序列上给出结果,并描述如何使用我们的方法自动处理将要处理的巨大数据流(≈1Tb day -1 )。由SDO / AIA提供。

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