论文标题

将冠状质量弹出的3D演变连接到其源区域

Connecting 3D evolution of Coronal Mass Ejections to their Source Regions

论文作者

Majumdar, Satabdwa, Pant, Vaibhav, Patel, Ritesh, Banerjee, Dipankar

论文摘要

由于冠状质量弹出(CME)是太空天气的主要驱动因素,因此从内部电晕开始研究它们的演变至关重要。在这项工作中,我们使用渐变的圆柱壳(GCS)模型来研究内部59个CME的3D演变($ <$ 3r $ _ {\ odot} $)和外部($> $ 3R $ _ {\ odot} $)使用COR-1和Cor-2 On-cor-2 solar portervortial specration(sceraft)(sceraft)(sceraft)(符号)(scece)我们识别这些CME的源区域,并将它们分类为与活动区域(ARS),主动突出(AP)和突出喷发(PES)相关的CME。我们发现CME的27美元$ \%$显示出真正的扩展,31 $ \%$在向外传播时显示出真正的偏转。使用CMES的3D运动曲线,我们将真实加速度的演变与内部和外表壳中真实宽度的演变联系起来。从而提供了观察性证据,证明了洛伦兹部队对运动学的影响的高度范围为$ 2.5-3 $ r $ _ {\ odot} $。我们发现,峰值3D速度和加速度的分布范围很大,范围从396到2465 km〜s $^{ - 1} $和176至10922 M〜S $^{ - 2} $,分别为较长的尾巴,主要来自源自ARS或APS的CMES。此外,我们发现真正加速度的大小与其持续时间与-1.19的功率定律指数成反比。我们认为,这些结果将为即将到来的太空任务的计划提供重要的意见,这些投入将观察内部电晕和研究CME启动和传播的模型。

Since Coronal Mass Ejections (CMEs) are the major drivers of space weather, it is crucial to study their evolution starting from the inner corona. In this work we use Graduated Cylindrical Shell (GCS) model to study the 3D evolution of 59 CMEs in the inner ($<$ 3R$_{\odot}$) and outer ($>$ 3R$_{\odot}$) corona using observations from COR-1 and COR-2 on-board Solar TErrestrial RElations Observatory (STEREO) spacecraft. We identify the source regions of these CMEs and classify them as CMEs associated with Active Regions (ARs), Active Prominences (APs), and Prominence Eruptions (PEs). We find 27 $\%$ of CMEs show true expansion and 31 $\%$ show true deflections as they propagate outwards. Using 3D kinematic profiles of CMEs, we connect the evolution of true acceleration with the evolution of true width in the inner and outer corona. Thereby providing the observational evidence for the influence of the Lorentz force on the kinematics to lie in the height range of $2.5-3$ R$_{\odot}$. We find a broad range in the distribution of peak 3D speeds and accelerations ranging from 396 to 2465 km~s$^{-1}$ and 176 to 10922 m~s$^{-2}$ respectively with a long tail towards high values coming mainly from CMEs originating from ARs or APs. Further, we find the magnitude of true acceleration is be inversely correlated to its duration with a power law index of -1.19. We believe that these results will provide important inputs for the planning of upcoming space missions which will observe the inner corona and the models that study CME initiation and propagation.

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