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首页> 外文期刊>The Astrophysical journal >MAGNETIC FIELDS IN M DWARFS: RAPID MAGNETIC FIELD VARIABILITY IN EV LACERTAE
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MAGNETIC FIELDS IN M DWARFS: RAPID MAGNETIC FIELD VARIABILITY IN EV LACERTAE

机译:M DWARFS中的磁场:EV腔腔中的快速磁场变化

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摘要

We report here our spectropolarimetric observations obtained using the CFHT Espadons high-resolution spectrograph of two M dwarf stars that standard models suggest are fully convective: EV Lac (M3.5) and HH And (M5.5). The difference in their rotational velocity makes them good targets for studying the dependence of the magnetic field topology in M dwarfs on rotation. Our results reveal some aspects of the field topology in EV Lac and HH And. We measured mean longitudinal magnetic field strengths (B_z) in EV Lac ranging from 18 ± 3 to -40 ± 3 G. The B_z variations are seen to occur on a timescale of less than 50 minutes, which is significantly shorter than the rotation period, and are not due to a flaring event. We discuss some formation scenarios of the Zeeman signatures found in EV Lac. For HH And we could not detect circular polarization and thus we place an upper limit on B_z of 5 G.
机译:我们在这里报告使用CFHT Espadons高分辨率光谱仪拍摄的两颗M矮星的光谱极化观测,标准模型表明它们是完全对流的:EV Lac(M3.5)和HH And(M5.5)。它们的旋转速度的差异使它们成为研究M个小矮人的磁场拓扑对旋转的依赖性的良好目标。我们的结果揭示了EV Lac和HH And中场拓扑的某些方面。我们测量了EV Lac中的平均纵向磁场强度(B_z),范围为18±3到-40±3G。B_z变化的发生时间少于50分钟,比旋转周期短得多,并且不是由于爆发事件。我们讨论了在EV Lac中发现的Zeeman签名的一些形成方案。对于HH并且我们无法检测到圆极化,因此我们将B_z的上限设置为5G。

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