首页> 外文期刊>The Astrophysical journal >FAR ULTRAVIOLET SPECTROSCOPIC EXPLORER SURVEY OF MAGELLANIC CLOUD SUPERNOVA REMNANTS
【24h】

FAR ULTRAVIOLET SPECTROSCOPIC EXPLORER SURVEY OF MAGELLANIC CLOUD SUPERNOVA REMNANTS

机译:麦哲伦云超新星遗迹的远紫外分光光度计调查

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

We report the progress to date from an ongoing unbiased ultraviolet survey of supernova remnants in the Magellanic Clouds using the Far Ultraviolet Spectroscopic Explorer (FUSE) satellite. Earlier work with FUSE and other instruments has indicated that optical and/or X-ray characteristics of supernova remnants are not always good predictors of their brightness in the ultraviolet. This survey is obtaining spectra of a random large sample of Magellanic Cloud supernova remnants with a broad range of radio, optical, and X-ray properties. We proposed 39 objects in the Large Magellanic Cloud and 11 objects from the Small Magellanic Cloud, with a standard request of 10 ks per object using the FUSE 30″ square aperture. To date, 39 objects have been observed in the survey (38 in the LMC and 1 in the SMC) and 15 have been detected, a detection rate of nearly 40%. Our survey has nearly tripled the number of UV-detected SNRs in the Magellanic Clouds (from 8 to 22). Because of the diffuse source sensitivity of FUSE, upper limits on nondetected objects are quite sensitive in many cases, dependent on night observing fraction and whether stellar light contamination plays a role for a given object. Estimated total luminosities in O Ⅵ, based simply on scaling the flux at the observed positions to an entire object, span a broad range from considerably brighter to many times fainter than the inferred soft X-ray luminosities, indicating that O Ⅵ can be an important and largely unrecognized coolant in certain objects. We compare the optical and X-ray properties of the detected and nondetected objects but do not find a simple indicator for ultraviolet detectability. Nondetections may be due to dumpiness of the emission, high foreground extinction, slow shocks whose emission gets attenuated by the Magellanic interstellar medium, or a combination of these effects. The characteristics of individual detected supernova remnants are summarized in an Appendix.
机译:我们使用远紫外光谱浏览器(FUSE)卫星对麦哲伦星云中超新星残余物进行的无偏紫外线调查,报告了迄今为止的进展。 FUSE和其他仪器的早期工作表明,超新星残留物的光学和/或X射线特征并不总是能很好地预测其在紫外线下的亮度。这项调查正在获得麦哲伦星云超新星遗迹的随机大样本的光谱,该样​​本具有广泛的无线电,光学和X射线特性。我们提出了大麦哲伦星云中的39个对象和小麦哲伦星云中的11个对象,使用FUSE 30英寸方孔径,每个对象的标准要求为10 ks。迄今为止,在调查中已观察到39个物体(LMC中为38个,SMC中为1个),已检测到15个,检测率接近40%。我们的调查将麦哲伦星云中紫外线检测到的SNR数量增加了近三倍(从8到22)。由于FUSE的漫射源灵敏度,在许多情况下,未检测到的物体的上限非常敏感,这取决于夜间观察分数以及恒星光污染是否对给定物体起作用。估计OⅥ的总光度仅基于将观察到的位置的通量缩放到整个物体即可,其范围比推断的软X射线光度要大得多,从暗度到暗度都是很多倍,这表明OⅥ可能是重要的以及某些对象中大部分无法识别的冷却剂。我们比较了检测到的和未检测到的物体的光学和X射线特性,但没有找到紫外线可检测性的简单指标。未检测到可能是由于发射的信号强度大,前景高消光,缓慢的激波(麦哲伦星际介质减弱了其发射)或这些影响的组合。附录中总结了单个检测到的超新星残留物的特征。

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