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Unveiling a magnetized jet from a low-mass protostar

机译:向低质量原恒星揭开磁化射流的面纱

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摘要

Protostellar jets are one of the most intriguing signposts in star formation. Recent detection of a jet rotation indicates that they can carry away angular momenta from the innermost edges of the disks, allowing the disks to feed the central protostars. In current jet-launching models, magnetic fields are required to launch and collimate the jets, however, observationally, it is still uncertain if magnetic fields are really present in the jets. Here we report a clear detection of SiO line polarization in the HH 211 protostellar jet. Since this line polarization has been attributed to the Goldreich-Kylafis effect in the presence of magnetic field, our observations show convincingly the presence of magnetic field in a jet from a low-mass protostar. The implied magnetic field could be mainly toroidal, as suggested in current jet-launching models, in order to collimate the jet at large distances.
机译:恒星喷射是恒星形成过程中最引人入胜的路标之一。最近对喷气旋转的检测表明,它们可以从圆盘的最内边缘带走角动量,从而使圆盘能够馈入中心原恒星。在当前的射流发射模型中,需要磁场来发射和准直射流,但是,观察到,仍然不确定射流中是否确实存在磁场。在这里,我们报告了在HH 211原星喷射中SiO线极化的清晰检测。由于这种线极化归因于存在磁场时的Goldreich-Kylafis效应,因此我们的观察令人信服地表明,来自低质量原恒星的射流中存在磁场。如目前的射流发射模型所建议的那样,隐含的磁场可能主要是环形的,以便使大距离的射束准直。

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