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Detection of a weak surface magnetic field on Sirius A: are all tepid stars magnetic?

机译:天狼星A上的弱表面磁场的检测A:所有的冷星都具有磁性吗?

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Aims. We aim at a highly sensitive search for weak magnetic fields in main sequence stars of intermediate mass, by scanning classes of stars with no previously reported magnetic members. After detecting a weak magnetic field on the normal, rapidly rotating A-type star Vega, we concentrate here on the bright star Sirius?A, taken as a prototypical, chemically peculiar, moderately rotating Am star. Methods. We employed the NARVAL and ESPaDOnS high-resolution spectropolarimeters to collect 442?circularly polarized spectra, complemented by 60?linearly polarized spectra. Using a list of about 1100?photospheric spectral lines, we computed a cross correlation line profile from every spectrum, leading to a signal-to-noise ratio of up to 30?000 in the polarized profile. Results. We report the repeated detection of circularly polarized, highly asymmetric signatures in the line profiles, interpreted as Zeeman signatures of a large-scale photospheric magnetic field, with a line-of-sight component equal to 0.2?±?0.1?G. Conclusions. This is the first polarimetric detection of a surface magnetic field on an Am star. Using rough estimates of the physical properties of the upper layers of Sirius A, we suggest that a dynamo operating in the shallow convective envelope cannot account for the field strength reported here. Together with the magnetic field of Vega, this result confirms that a new class of magnetic objects exists among non Ap/Bp intermediate-mass stars, and it may indicate that a significant fraction of tepid stars are magnetic.
机译:目的我们旨在通过扫描没有先前报道的磁性成员的恒星类别,以高灵敏度地搜索中等质量主序列恒星中的弱磁场。在检测到正常的,快速旋转的A型恒星Vega的弱磁场之后,我们将注意力集中在明亮的恒星Sirius?A上,该恒星是典型的,化学性质独特的,适度旋转的Am星。方法。我们使用NARVAL和ESPaDOnS高分辨率光谱旋光计收集442个圆偏振光谱,并辅以60个线性偏振光谱。使用大约1100个光球光谱线的列表,我们从每个光谱中计算出一个互相关线轮廓,从而导致偏振轮廓中的信噪比高达30?000。结果。我们报告了重复检测线轮廓中的圆极化,高度非对称签名,这被解释为大规模光球磁场的塞曼签名,其视线分量等于0.2?±?0.1?G。结论。这是对Am星表面磁场的第一个极化检测。通过对天狼星A上层物理性质的粗略估计,我们认为在浅对流包层中运行的发电机不能解释此处报道的场强。与Vega的磁场一起,这一结果证实了在非Ap / Bp中间质量恒星中存在一类新型的磁性物体,这可能表明相当一部分温热星具有磁性。

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