首页> 外文期刊>Astronomy and astrophysics >HD?161701, a chemically peculiar binary with a HgMn primary and an Ap secondary
【24h】

HD?161701, a chemically peculiar binary with a HgMn primary and an Ap secondary

机译:HD?161701,一种化学性质独特的二元化合物,具有初级的HgMn和次级的Ap

获取原文
           

摘要

Context. In recent years, HgMn stars have attracted attention after in several of them surface chemical spots of different elements were discovered, whose origin and possible connection with binarity and magnetic fields is not clear yet. Aims. We perform a complete study of the HgMn binary HD?161701, including the determination of physical parameters and photospheric chemical abundances. Methods. We analyzed time series of high-resolution spectroscopic observations obtained with ESO’s spectrograph FEROS and the spectro-polarimeter HARPS, in addition to a near-IR spectrum obtained with CRIRES. Radial velocity curves for both stars were combined with additional spectroscopic information to estimate absolute stellar parameters. A spectral separation technique was applied, which enabled us to conduct a detailed spectral analysis of both the HgMn primary and the low-luminosity secondary component, which turned out to be a peculiar star as well. Chemical abundances were determined by spectral synthesis. Using HARPS and FEROS spectra obtained at 11 rotational phases, we detected line profile variations in both stellar companions, indicating a nonuniform surface distribution of chemical composition. Results. HD?161701 is a binary system formed by two chemically peculiar stars in an almost circular orbit with a period of 12.451 d. The primary is a 4.0 M⊙ star with a chemical pattern typical of HgMn stars with notable overabundances of P, Mn, Ga, Y, Xe, and Hg. The secondary is a 2.4 M⊙ star showing moderate (1?2 dex) overabundance in metals of the iron group, and strong (2?5 dex) overabundaces in Sr, Y, and particularly rare-earth elements. This star presents a remarkable surface chemical spot pattern with Ti and rare-earths concentrated on the surface region that is pemanently facing the binary companion, and Fe concentrated on the far side. The primary star shows weak profile variations in Mn and Cr spectral lines. Conclusions. The coincidence of chemical spots with the position of the binary companion, a fact that has recently been reported also in a few other chemically peculiar stars, suggests a possible connection between the presence of the companion and the origin of chemical anomalies.
机译:上下文。近年来,在发现了几种不同元素的表面化学斑点之后,HgMn恒星引起了人们的关注,其起源以及与二元性和磁场的可能联系尚不清楚。目的我们对HgMn二元HD?161701进行了完整的研究,包括确定物理参数和光球化学丰度。方法。除了使用CRIRES获得的近红外光谱外,我们还分析了由ESO的光谱仪FEROS和分光计HARPS获得的高分辨率光谱观察的时间序列。将两颗恒星的径向速度曲线与其他光谱信息结合起来,以估计绝对恒星参数。应用了光谱分离技术,这使我们能够对HgMn主成分和低发光度次要成分进行详细的光谱分析,这些成分也被证明是奇特的恒星。通过光谱合成确定化学丰度。使用在11个旋转相位处获得的HARPS和FEROS光谱,我们检测到两个恒星伴星中的线轮廓变化,表明化学成分的表面分布不均匀。结果。 HD?161701是一个双星系统,由两个化学奇特的恒星形成,周期约为12.451 d,几乎是圆形的轨道。主星是一颗4.0M⊙的恒星,具有典型的HgMn恒星的化学模式,且P,Mn,Ga,Y,Xe和Hg明显过量。次级是一颗2.4M⊙的恒星,在铁族金属中表现出中等的(1?2 dex)过量,而在Sr,Y尤其是稀土元素中表现出强烈的(2?5 dex)过量。该恒星呈现出显着的表面化学斑点图案,其中Ti和稀土元素集中在永久面对二元同伴的表面区域,而Fe则集中在另一侧。初级恒星在Mn和Cr光谱线上显示出较弱的轮廓变化。结论。化学斑点与双星伴星位置的重合(最近在其他一些化学奇异的恒星中也有报道)表明,伴星的存在与化学异常起源之间可能存在联系。

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