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On the Alignment of T Tauri Stars with the Local Magnetic Field in the Taurus Molecular Cloud Complex

机译:金牛座分子云复合体中T Tauri星与局部磁场的对准

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摘要

Magnetic field is believed to play an important role in the collapse of a molecular cloud. In particular, due to the properties of magnetic forces, collapse should be easier along magnetic field lines. This is supported by the large-scale sheet-like structures observed in the Taurus giant molecular cloud for instance. Here we investigate whether such a preferred orientation for collapse is present at a much smaller scale, that of individual objects, i.e., about 100AU. We use recent high-angular resolution images of T Tauri stars located in the Taurus star-forming region to find the orientation of the symmetry axis of each star+jet+disk system and compare it with that of the local magnetic field. We find that (i) T Tauri stars that are associated to a jet or an outflow are generally oriented parallel to the magnetic field, as previously demonstrated. More surprising, given our current knowledge of these objects, we also find that (ii) T Tauri stars that are not at present believed to be associated to a jet or an outflow are oriented very differently, i.e., mostly perpendicular to the magnetic field. We present some implications of this puzzling new result.
机译:磁场被认为在分子云的崩溃中起着重要作用。特别地,由于磁力的特性,沿磁场线的塌陷应该更容易。例如,这在金牛座巨型分子云中观察到的大规模片状结构得到了支持。在这里,我们调查了这种优选的塌陷方向是否以较小的比例存在,即单个物体的比例,即大约100AU。我们使用位于金牛座恒星形成区域的T金牛座星的最新高角度分辨率图像,来找到每个恒星+射流+磁盘系统对称轴的方向,并将其与局部磁场的对称轴进行比较。我们发现(i)与射流或出口相关的T Tauri星通常大致平行于磁场定向,如先前所示。更加令人惊讶的是,鉴于我们对这些物体的当前知识,我们还发现(ii)目前不被认为与射流或流出有关的T Tauri星的取向非常不同,即大多垂直于磁场。我们提出了这个令人费解的新结果的一些含义。

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