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A spectroscopic survey of the WNL stars in the Large Magellanic Cloud: General properties and binary status.

机译:大麦哲伦星云中WNL恒星的光谱调查:一般性质和双星状态。

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摘要

This thesis presents the results of an intense, spectroscopic survey of 41 of the 47 known, late-type, nitrogen-rich Wolf-Rayet (WR) stars in the Large Magellanic Cloud (LMC) which could be observed with ground-based, optical telescopes. For the study of the remaining 6 WNL located in the extremely dense central object of 30 Dor, R136, adaptive-optics assisted, near-infrared spectroscopy was required. The results of this study will be published elsewhere.;After summarizing the general importance of massive stars, we describe the spectroscopic observations of our program stars. We then detail the data analysis process, which encompasses careful calibration and proper choice of RV standards. We also include publicly available, visible and X-ray photometric data in our analysis. We are able to identify four previously unknown binaries in our sample, bringing the total number of known WNL binaries in the LMC to only nine. As a direct result, we question the assumption that binarity is required to form WR stars at lower metallicity.;At least some of the hydrogen-containing WNL stars in our sample seem not to be genuine, evolved, helium-burning WR stars, but rather unevolved, hydrogen-burning objects. There is ample evidence that some of these stars are the most massive stars known. As a second and most remarkable result, all but one of our nine binaries harbor such extreme objects; this greatly enlarges the sample of such known binaries, and paves the way for an independent mass determination via Keplerian orbits in further studies, some of which we have already initiated. The results of those studies will be crucial for calibrating stellar models. One of these binaries, R145, is then studied in greater detail, combining previously published and unpublished data with ours, to present, for the first time, a full set of orbital parameters for both components of the binary system. Since we also determine the orbital inclination angle, we are able to derive the absolute masses of this extreme object. It is found that R145 very likely harbors the most massive star known and properly "weighed" so far.;Keywords. stars massive, stars: Wolf-Rayet, stars: evolution, stars: individual: R145.;Our survey concludes the decade-long effort of the Montreal Massive-Star Group to monitor all known WR stars in the Magellanic Clouds for radial-velocity (RV) variations due to binarity, a point which has been debated since the true, evolved nature of WR stars has been recognized in the late 1960s. From model calculations, it was expected that with decreasing metallicity, the binary frequency among WR stars increases, or otherwise the progenitor stars could not have turned into a WR star. Our survey set out to observationally test this assumption.
机译:本论文介绍了对大麦哲伦星云(LMC)中47个已知的晚型富氮Wolf-Rayet(WR)星中的41个进行了强烈的光谱学调查的结果,可以通过地基光学观测到望远镜。为了研究位于30 Dor,R136的极其密集的中心物体中的其余6个WNL,需要自适应光学辅助的近红外光谱。这项研究的结果将在其他地方发表。;总结了大质量恒星的一般重要性之后,我们描述了程序恒星的光谱观测。然后,我们详细介绍了数据分析过程,其中包括仔细校准和正确选择RV标准。我们还将分析中包括公开可用的可见光和X射线光度数据。我们能够在样本中识别出四个以前未知的二进制文件,从而使LMC中已知WNL二进制文件的总数只有九个。直接的结果是,我们质疑以下假设:在较低的金属度下形成WR恒星需要二元性;我们样本中至少某些含氢WNL恒星似乎不是真正的,已演化的,燃烧氦的WR恒星,但相对未进化的氢燃烧物体。有充分的证据表明,其中一些恒星是已知的质量最大的恒星。作为第二个也是最值得注意的结果,我们的九个二进制文件中只有一个包含了这些极端的对象。这极大地扩大了此类已知双星的样本,并为进一步研究中通过开普勒轨道进行独立质量测定铺平了道路,其中一些我们已经开始。这些研究的结果对于校准恒星模型至关重要。然后,对这些二进制文件中的一个R145进行了更详细的研究,将先前已发布和未发布的数据与我们的数据相结合,首次为二进制系统的两个组件提供了完整的轨道参数集。由于我们还确定了轨道倾斜角,因此我们能够得出该极端物体的绝对质量。据发现,R145极有可能拥有迄今为止已知并经过适当“称重”的最大质量的恒星。恒星质量大,恒星:Wolf-Rayet,恒星:演化,恒星:单个:R145。自从1960年代后期就认识到WR恒星真实,不断演化的特性以来,就一直存在争论。根据模型计算,可以预料,随着金属性的降低,WR恒星之间的二元频率会增加,否则,前体恒星就不可能变成WR恒星。我们的调查旨在观察性地检验此假设。

著录项

  • 作者

    Schnurr, Olivier.;

  • 作者单位

    Universite de Montreal (Canada).;

  • 授予单位 Universite de Montreal (Canada).;
  • 学科 Physics Astronomy and Astrophysics.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 212 p.
  • 总页数 212
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学;
  • 关键词

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