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首页> 外文期刊>The Astrophysical journal >Starburst-like Dust Extinction in the Small Magellanic Cloud
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Starburst-like Dust Extinction in the Small Magellanic Cloud

机译:麦哲伦星云中类似星爆的除尘

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The recent discovery that the ultraviolet (UV) dust extinction in starburst galaxies is similar to that found in the Small Magellanic Cloud (SMC) motivated us to reinvestigate the UV extinction found in the SMC. We have been able to improve significantly on previous studies by carefully choosing pairs of well-matched reddened and unreddened stars. In addition, we benefited from the improved signal-to-noise ratio of the NEWSIPS International Ultraviolet Explorer (IUE) data and the larger sample of SMC stars now available. Searching the IUE Final Archive, we found only four suitable early-type stars that were significantly reddened and had well-matched comparison stars. The extinction for three of these stars is remarkably similar. The curves are roughly linear with λ-1 and have no measurable 2175 ? bump. The fourth star has an extinction curve with a significant 2175 ? bump and weaker far-UV extinction. The dust along all four sight lines is thought to be local to the SMC. There is no significant Galactic foreground component. The first three stars lie in the SMC bar, and the line of sight for each of them passes through regions of recent star formation. The fourth star belongs to the SMC wing, and its line of sight passes through a much more quiescent region. Thus, the behavior of the dust extinction in the SMC supports a dependence of dust properties on star formation activity. However, other environmental factors (such as galactic metallicity) must also be important. Dust in the 30 Dor region of the LMC, where much more active star formation is present, does not share the extreme extinction properties seen in SMC dust.
机译:最近发现星爆星系中的紫外线(UV)灭绝与小麦哲伦星云(SMC)中的发现相似,这促使我们重新研究SMC中发现的紫外线消光。通过仔细选择成对匹配的变红和未变星,我们已经能够显着改善以前的研究。此外,我们还受益于NEWSIPS国际紫外线探测器(IUE)数据信噪比的提高和现在可用的更大的SMC恒星样本。在IUE最终档案库中搜索,我们只发现了4个合适的早期星,它们显着变红并且具有匹配良好的比较星。其中三颗恒星的灭绝非常相似。曲线与λ-1大致呈线性关系,没有可测量的2175?磕碰。第四颗恒星具有2175?碰撞和较弱的远紫外线消光。沿所有四个视线的灰尘被认为是SMC的局部区域。没有重要的Galactic前景组件。前三颗星位于SMC栏中,每颗星的视线都经过最近的恒星形成区域。第四颗星属于SMC机翼,它的视线穿过一个更加静止的区域。因此,SMC中粉尘消灭的行为支持了粉尘特性对恒星形成活动的依赖性。但是,其他环境因素(例如银河金属性)也必须很重要。 LMC的30 Dor区域中存在活跃的恒星形成的尘埃,没有SMC尘埃所具有的极端消光特性。

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