论文标题

虹膜MG II观察中的Spicules:自动识别

Spicules in IRIS Mg II Observations: Automated Identification

论文作者

Herde, Vicki L., Chamberlin, Phillip C., Schmit, Don, Bose, Souvik, Daw, Adrian, Milligan, Ryan O., Polito, Vanessa

论文摘要

我们已经开发了一种算法来识别仅使用MG II光谱观测值对磁盘Spicules进行的首次系统调查。使用该算法,我们在三个接口区域成像光谱仪(IRIS)数据集中识别具有独特太阳特征目标的2021个事件,总计为300分钟:(1)活性区域,(2)衰减的活动区域/活动网络和(3)冠状孔。我们介绍了事件统计数据,并将发生率与潜在的光晶磁场强度相关联。该方法确定了Spicule事件的密度和发生率,类似于使用HIN和CA II观察的先前研究。此外,这项研究还以低于20 g的磁场强度下以非常低的速率确定了类似Spicule的事件,并且在活跃区域中的100至200 g之间明显增加了冠状​​孔的100至200 g,可用于为未来的观察活动提供信息。这些信息可用于帮助表征Spicules在其一生中的表征,并通过太阳喷发集成场光谱仪(SNIFS)发声火箭来补充现有的Hα光谱功能和即将进行的LYα光谱观测。总的来说,这项研究介绍了一种仅使用Mg II光谱检测太阳能Spicules的方法,并为磁场强度提供了Mg II H系中的Spicule统计数据,以预测Spicule的发生。

We have developed an algorithm to identify solar spicules in the first ever systematic survey of on-disk spicules exclusively using Mg II spectral observations. Using this algorithm we identify 2021 events in three Interface Region Imaging Spectrograph (IRIS) data sets with unique solar feature targets spanning a total of 300 minutes: (1) active region, (2) decayed active region/active network, and (3) coronal hole. We present event statistics and relate occurrence rates to the underlying photospheric magnetic field strength. This method identifies spicule event densities and occurrence rates similar to previous studies performed using Hα and Ca II observations of active regions. Additionally, this study identifies spicule-like events at very low rates at magnetic field intensities below 20 G, and increasing significantly between 100 and 200 G in active regions and above 20 G in coronal holes, which can be used to inform future observation campaigns. This information can be be used to help characterize spicules over their full lifetimes, and compliments existing Hα spectral capabilities and upcoming Lyα spectral observations with the Solar eruptioN Integral Field Spectrograph (SNIFS) sounding rocket. In total, this study presents a method for detecting solar spicules exclusively using Mg II spectra, and provides statistics for spicule occurrences in the Mg II h line with respect to the magnetic field strength for the purpose of predicting spicule occurrences.

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