...
首页> 外文期刊>The Astrophysical journal >THE DUSTIEST POST-MAIN SEQUENCE STARS IN THE MAGELLANIC CLOUDS
【24h】

THE DUSTIEST POST-MAIN SEQUENCE STARS IN THE MAGELLANIC CLOUDS

机译:麦哲伦星系中最尘埃的主序星

获取原文

摘要

Using observations from the Herschel Inventory of The Agents of Galaxy Evolution (HERITAGE) survey of the Magellanic Clouds (MC), we have found 35 evolved stars and stellar end products that are bright in the far-infrared. These 28 (LMC) and 7 (SMC) sources were selected from the 529 evolved star candidates in the HERITAGE far-infrared point source catalogs. Our source identification method is based on spectral confirmation, spectral energy distribution characteristics, careful examination of the multiwavelength images and includes constraints on the luminosity, resulting in a thoroughly vetted list of evolved stars. These sources span a wide range in luminosity and hence initial mass. We found 13 low- to intermediate-mass evolved stars, including asymptotic giant branch (AGB) stars, post-AGB stars, planetary nebulae, and a symbiotic star. We also identify 10 high mass stars, including 4 of the 15 known B[e] stars in the MC, 3 extreme red supergiants that are highly enshrouded by dust, a Luminous Blue Variable, a Wolf–Rayet star, and two supernova remnants. Further, we report the detection of 9 probable evolved objects which were previously undescribed in the literature. These sources are likely to be among the dustiest evolved objects in the MC. The Herschel emission may either be due to dust produced by the evolved star or it may arise from swept-up interstellar medium material.
机译:通过对麦哲伦星云(MC)的《银河系演化的代理人》的赫歇尔清单(HERITAGE)进行的观察,我们发现了35个已演化的恒星和恒星最终产物,它们在远红外区域是明亮的。这28个(LMC)和7个(SMC)光源是从HERITAGE远红外点光源目录中的529颗演化恒星候选中选择的。我们的源识别方法基于光谱确认,光谱能量分布特征,仔细检查多波长图像,并包括对光度的限制,从而得出经过仔细审查的已演化恒星列表。这些光源的亮度范围很广,因此初始质量也很大。我们发现了13个低质量至中等质量的演化恒星,包括渐近巨星(AGB)恒星,AGB后恒星,行星状星云和共生星。我们还确定了10个高质量恒星,包括MC中15个已知的B [e]星中的4个,被尘埃高度包裹的3个极端红色超巨星,一个发光的蓝色变星,一个Wolf-Rayet恒星以及两个超新星遗迹。此外,我们报告了对9种可能进化的物体的检测,这些物体以前在文献中未描述。这些来源很可能是MC中最尘埃落定的物体之一。赫歇尔辐射可能是由于恒星产生的尘埃,也可能是由扫掠的星际介质物质引起的。

著录项

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