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The exceptional Herbig Ae star HD 101412: The first detection of resolved magnetically split lines and the presence of chemical spots in a Herbig star†

机译:出色的Herbig Ae星HD 101412:首次检测到解析的磁分裂线和Herbig星中存在化学斑点†

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In our previous search for magnetic fields in Herbig Ae stars, we pointed out that HD 101412 possesses the strongest magnetic field among the Herbig Ae stars and hence is of special interest for follow-up studies of magnetism among young pre-main-sequence stars. We obtained high-resolution, high signal-to-noise UVES and a few lower quality HARPS spectra revealing the presence of resolved magnetically split lines. HD 101412 is the first Herbig Ae star for which the rotational Doppler effect was found to be small in comparison to the magnetic splitting and several spectral lines observed in unpolarized light at high dispersion are resolved into magnetically split components. The measured mean magnetic field modulus varies from 2.5 to 3.5kG, while the mean quadratic field was found to vary in the range of 3.5 to 4.8 kG. To determine the period of variations, we used radial velocity, equivalent width, line width, and line asymmetry measurements of variable spectral lines of several elements, as well as magnetic field measurements. The period determination was done using the Lomb-Scargle method. The most pronounced variability was detected for spectral lines of He I and the iron peak elements, whereas the spectral lines of CNO elements are only slightly variable. From spectral variations and magnetic field measurements we derived a potential rotation period Prot = 13.86 d, which has to be proven in future studies with a larger number of observations. It is the first time that the presence of element spots is detected on the surface of a Herbig Ae/Be star. Our previous study of Herbig Ae stars revealed a trend towards stronger magnetic fields for younger Herbig Ae stars, confirmed by statistical tests. This is in contrast to a few other (non-statistical) studies claiming that magnetic Herbig Ae stars are progenitors of the magnetic Ap stars. New developments in MHD theory show that the measured magnetic field strengths are compatible with a current-driven instability of toroidal fields generated by differential rotation in the stellar interior. This explanation for magnetic intermediate-mass stars could be an alternative to a frozen-in fossil field (© 2010 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)
机译:在我们先前对Herbig Ae恒星的磁场搜索中,我们指出HD 101412具有Herbig Ae恒星中最强的磁场,因此对于后续主序年轻恒星的磁性跟踪研究特别感兴趣。我们获得了高分辨率,高信噪比的UVES和一些较低质量的HARPS光谱,揭示了分辨出的磁性分裂线的存在。 HD 101412是第一颗Herbig Ae星,其旋转多普勒效应比磁分裂小,并且在非偏振光中以高色散观察到的几条谱线分解为磁分裂分量。测得的平均磁场模量在2.5至3.5kG之间变化,而平均二次磁场在3.5至4.8 kG范围内变化。为了确定变化的周期,我们使用了径向速度,等效宽度,线宽和几个元素的可变光谱线的线不对称性测量,以及磁场测量。使用Lomb-Scargle方法确定周期。对于He I和铁峰元素的谱线,检测到最明显的变异性,而CNO元素的谱线仅略有变化。通过频谱变化和磁场测量,我们得出了潜在的旋转周期P rot = 13.86 d,这在以后的研究中必须进行大量的观测才能证明。这是第一次在Herbig Ae / Be星的表面上检测到元素斑点的存在。我们先前对Herbig Ae恒星的研究表明,年轻的Herbig Ae恒星具有更强的磁场趋势,这已通过统计测试得到证实。这与其他一些(非统计)研究相反,这些研究声称磁性Herbig Ae恒星是磁性Ap星的祖先。 MHD理论的新进展表明,测得的磁场强度与恒星内部由差动旋转产生的环形磁场的电流驱动不稳定性兼容。对磁性中间质量恒星的这种解释可能是冻结化石场的替代方法(©2010 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim)

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