Shiyu Liang, Ziyuan Wang, Zhenghua Huang, Hengyuan Wei, H. Fu, Ming Xiong, Lidong Xia
{"title":"Electron Densities of Transition Region Loops Derived from IRIS O iv Spectral Data","authors":"Shiyu Liang, Ziyuan Wang, Zhenghua Huang, Hengyuan Wei, H. Fu, Ming Xiong, Lidong Xia","doi":"10.3847/2041-8213/ad3d5e","DOIUrl":null,"url":null,"abstract":"\n Loops are fundamental structures in the magnetized atmosphere of the Sun. Their physical properties are crucial for understanding the nature of the solar atmosphere. Transition region loops are relatively dynamic and their physical properties have not yet been fully understood. With spectral data of the line pair of O iv 1399.8 Å and 1401.2 Å (\n \n\n\n \n \n \n T\n \n \n max\n \n \n =\n 1.4\n ×\n \n \n 10\n \n \n 5\n \n \n \n \n K) of 23 transition region loops obtained by IRIS, we carry out the first systematic analyses to their loop lengths (L), electron densities (n\n \n e\n ), and effective temperatures. We found electron densities, loop lengths, and effective temperatures of these loops are in the ranges of 8.9 × 109–3.5 × 1011 cm−3, 8–30 Mm, and 1.9 × 105–1.3 × 106 K, respectively. At a significant level of 90%, regression analyses show that the relationship between electron densities and loop lengths is n\n \n e\n [cm−3] ∝ (L[Mm])−0.78±0.42, while the dependences of electron densities on effective temperatures and that on the line intensities are not obvious. These observations demonstrate that transition region loops are significantly different than their coronal counterparts. Further studies on the theoretical aspect based on the physical parameters obtained here are of significance for understanding the nature of transition region loops.","PeriodicalId":507476,"journal":{"name":"The Astrophysical Journal Letters","volume":"2 9","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-04-15","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"The Astrophysical Journal Letters","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.3847/2041-8213/ad3d5e","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Loops are fundamental structures in the magnetized atmosphere of the Sun. Their physical properties are crucial for understanding the nature of the solar atmosphere. Transition region loops are relatively dynamic and their physical properties have not yet been fully understood. With spectral data of the line pair of O iv 1399.8 Å and 1401.2 Å (
T
max
=
1.4
×
10
5
K) of 23 transition region loops obtained by IRIS, we carry out the first systematic analyses to their loop lengths (L), electron densities (n
e
), and effective temperatures. We found electron densities, loop lengths, and effective temperatures of these loops are in the ranges of 8.9 × 109–3.5 × 1011 cm−3, 8–30 Mm, and 1.9 × 105–1.3 × 106 K, respectively. At a significant level of 90%, regression analyses show that the relationship between electron densities and loop lengths is n
e
[cm−3] ∝ (L[Mm])−0.78±0.42, while the dependences of electron densities on effective temperatures and that on the line intensities are not obvious. These observations demonstrate that transition region loops are significantly different than their coronal counterparts. Further studies on the theoretical aspect based on the physical parameters obtained here are of significance for understanding the nature of transition region loops.
环流是太阳磁化大气中的基本结构。它们的物理特性对于了解太阳大气的性质至关重要。过渡区环带是相对动态的,其物理特性尚未被完全了解。利用 IRIS 获得的 23 个过渡区环的 O iv 1399.8 Å 和 1401.2 Å 线对(T max = 1.4 × 10 5 K)的光谱数据,我们首次对它们的环长(L)、电子密度(n e )和有效温度进行了系统分析。我们发现这些环的电子密度、环长和有效温度分别在 8.9 × 109-3.5 × 1011 cm-3、8-30 Mm 和 1.9 × 105-1.3 × 106 K 之间。回归分析表明,在 90% 的显着水平上,电子密度与环长的关系为 n e [cm-3] ∝ (L[Mm])-0.78±0.42 ,而电子密度与有效温度和线强度的关系并不明显。这些观测结果表明,过渡区环带与日冕环带有很大不同。根据本文获得的物理参数进一步开展理论方面的研究,对于理解过渡区环带的性质具有重要意义。