...
首页> 外文期刊>The Astrophysical journal >Hinode, Trace, Soho, And Ground-based Observations Of A Quiescent Prominence
【24h】

Hinode, Trace, Soho, And Ground-based Observations Of A Quiescent Prominence

机译:Hinode,Trace,Soho和静态突出的地面观测

获取原文
获取原文并翻译 | 示例

摘要

A quiescent prominence was observed by several instruments on 2007 April 25. The temporal evolution was recorded in Hα by the Hinode SOT, in X-rays by the Hinode XRT, and in the 195 A channel by TRACE. Moreover, ground-based observatories (GBOs) provided calibrated Hα intensities. Simultaneous extreme-UV (EUV) data were also taken by the Hinode EIS and SOHO SUMER and CDS instruments. Here we have selected the SOT Hα image taken at 13:19 UT, which nicely shows the prominence fine structure. We compare this image with cotemporaneous ones taken by the XRT and TRACE and show the intensity variations along several cuts parallel to the solar limb. EIS spectra were obtained about half an hour later. Dark prominence structure clearly seen in the TRACE and EIS 1,95 A images is due to the prominence absorption in H I, He I, and He II resonance continua plus the coronal emissivity blocking due to the prominence void (cavity). The void clearly visible in the XRT images is entirely due to X-ray emissivity blocking. We use TRACE, EIS, and XRT data to estimate the amount of absorption and blocking. The Hα integrated intensities independently provide us with an estimate of the Hα opacity, which is related to the opacity of resonance continua as follows from the non-LTE radiative-transfer modeling. However, spatial averaging of the Hα and EUV data have quite different natures, which must be taken into account when evaluating the true opacities. We demonstrate this important effect here for the first time. Finally, based on this multiwavelength analysis, we discuss the determination of the column densities and the ionization degree of hydrogen in the prominence.
机译:在2007年4月25日,几种仪器观测到了一个静止的凸起。时间的演变在Hinode SOT的Hα中,在Hinode XRT的X射线中以及在TRACE的195 A通道中记录。此外,地面天文台(GBO)提供了校准的Hα强度。同时,Hinode EIS和SOHO SUMER和CDS仪器也采集了极端紫外线(EUV)数据。在这里,我们选择了在UT 13:19拍摄的SOTHα图像,很好地显示了突出的精细结构。我们将此图像与XRT和TRACE拍摄的同期图像进行了比较,并显示了沿平行于太阳肢的几个切口的强度变化。半小时后获得EIS光谱。在TRACE和EIS 1,95 A图像中清晰可见的暗色突出结构是由于H I,He I和He II共振连续性中的突出吸收,以及由于突出空隙(腔)导致的冠状发射率阻滞。在XRT图像中清晰可见的空隙完全是由于X射线发射率受阻。我们使用TRACE,EIS和XRT数据来估计吸收和阻塞的量。 Hα集成强度独立地为我们提供了Hα不透明性的估计,这与非LTE辐射传递模型中的共振连续性的不透明性有关。但是,Hα和EUV数据的空间平均具有完全不同的性质,在评估真实不透明度时必须考虑到这一点。我们在这里首次展示了这一重要作用。最后,在此多波长分析的基础上,我们讨论了色谱柱密度的确定以及突起中氢离子化程度的确定。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号