...
首页> 外文期刊>The Astrophysical journal >FAR-UV SPECTRAL VARIABILITY IN THE GRAVITATIONAL LENS CANDIDATE UM 425
【24h】

FAR-UV SPECTRAL VARIABILITY IN THE GRAVITATIONAL LENS CANDIDATE UM 425

机译:重力候选透镜UM 425的远紫外光谱变异性

获取原文
获取原文并翻译 | 示例

摘要

A comparison of recently acquired far-UV spectra with data obtained nearly 10 months earlier indicates changes have occurred in both absorption and ionization levels associated with Broad Absorption Line (BAL) structure in the QSO UM 425, a candidate gravitationally lensed system. These observations are compared with the initial discovery of O VI and N V BAL structure previously found with the International Ultraviolet Explorer (WE), that suggests outflow of highly ionized material with speeds up to ~-12,000 km s~(-1) in the QSO (z = 1.471) rest frame. Discrete absorption components in the O VI BAL trough, occurring at velocity intervals of ~2100 km s~(-1) up to the terminal speed, are also evident in the Lyman-α λ1216 line profile, which is affected by similar absorption structures within the velocity-broadened N V λ1240 BAL trough. The greatest temporal change in relative optical depth occurs at velocity intervals which correspond to the BAL absorption components. Significantly, a decrease in O VI BAL absorption over the entire BAL velocity range was accompanied by both an increase in ionization level, indicated by enhanced O VI emission, and by a strengthening of other moderate-to high-excitation emission lines, that include S VI(1) λλ937,945, C Ⅲ(1) λ977, N Ⅲ(1) λ990, and S IV(1) λλ1063,1073. These observations are relevant to time-delay studies of UM 425 because the temporal changes observed in intrinsic QSO ionization are small compared with the estimated delay time between the images in the system.
机译:将最近获得的远紫外光谱与近10个月前获得的数据进行比较,表明与重力透镜系统候选QSO UM 425中的宽吸收线(BAL)结构相关的吸收和电离能级均发生了变化。将这些观察结果与国际紫外线探测器(WE)先前发现的O VI和NV BAL结构的最初发现进行了比较,这表明QSO中速度高达-12,000 km s〜(-1)的高度电离物质的流出(z = 1.471)静止帧。在Lyman-αλ1216线剖面中,O VI BAL槽中离散的吸收成分也以〜2100 km s〜(-1)的速度间隔出现,直至最终速度,这在Lyman-αλ1216线剖面中也很明显,这受到内部相似吸收结构的影响速度扩展的NVλ1240BAL槽。相对光学深度的最大时间变化发生在对应于BAL吸收分量的速度间隔处。值得注意的是,在整个BAL速度范围内,O VI BAL吸收的降低伴随着电离水平的提高(由增强的O VI发射指示)和其他中高激发发射线(包括S)的增强VI(1)λλ937,945,CⅢ(1)λ977,NⅢ(1)λ990和S IV(1)λλ1063,1073。这些观察结果与UM 425的延迟研究有关,因为与系统中图像之间的估计延迟时间相比,固有QSO电离中观察到的时间变化较小。

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