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Evolution of magnetic fields in stars across the upper main sequence: I. Catalogue of magnetic field measurements with FORS1 at the VLT

机译:横跨上部主序列的恒星中磁场的演变:I. VLT处使用FORS1进行的磁场测量目录

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摘要

To properly understand the physics of Ap and Bp stars it is particularly important to identify the origin of their magnetic fields. For that, an accurate knowledge of the evolutionary state of stars that have a measured magnetic field is an important diagnostic. Previous results based on a small and possibly biased sample suggest that the distribution of magnetic stars with mass below 3 M_sun in the H-R diagram differs from that of normal stars in the same mass range (Hubrig et al. 2000). In contrast, higher mass magnetic Bp stars may well occupy the whole main-sequence width (Hubrig, Schoeller & North 2005). In order to rediscuss the evolutionary state of upper main sequence magnetic stars, we define a larger and bias-free sample of Ap and Bp stars with accurate Hipparcos parallaxes and reliably determined longitudinal magnetic fields. We used FORS1 at the VLT in its spectropolarimetric mode to measure the magnetic field in chemically peculiar stars where it was unknown or poorly known as yet. In this first paper we present our results of the mean longitudinal magnetic field measurements in 136 stars. Our sample consists of 105 Ap and Bp stars, two PGa stars, 17 HgMn stars, three normal stars, and nine SPB stars. A magnetic field was for the first time detected in 57 Ap and Bp stars, in four HgMn stars, one PGa star, one normal B-type star and four SPB stars.
机译:为了正确理解Ap和Bp恒星的物理特性,确定它们的磁场起源特别重要。为此,对具有测量磁场的恒星演化状态的准确了解是一项重要的诊断。先前基于较小且可能有偏差的样本得出的结果表明,在相同质量范围内,H-R图中质量低于3 M_sun的磁星的分布与正常恒星的分布不同(Hubrig et al。2000)。相反,较高质量的Bp恒星很可能占据整个主序列宽度(Hubrig,Schoeller和North 2005)。为了重新讨论高层主序磁星的演化状态,我们定义了一个较大且无偏差的Ap和Bp星样本,它们具有精确的Hipparcos视差和可靠确定的纵向磁场。我们在VLT的光谱极化模式下使用了FORS1来测量未知或未知的化学特殊恒星中的磁场。在第一篇论文中,我们介绍了136颗恒星的平均纵向磁场测量结果。我们的样本包括105个Ap和Bp星,两个PGa星,17个HgMn星,三个普通星和九个SPB星。首次在57个Ap和Bp星,四个HgMn星,一个PGa星,一个正常B型星和四个SPB星中检测到磁场。

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