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Magnetic field and accretion in EX Lup

机译:磁场和前李的吸引力

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While the Sun is a quiet and well-balanced star now, during its first few million years it possessed a strong magnetic field and actively accreted material from its circumstellar environment. Theoretical models predict that under certain circumstances the interaction of a strongly magnetic star and its circumstellar disk may lead to short bursts of increased accretion onto the star (D'Angelo & Spruit 2012). Examples for this phenomenon may be the members of a group of young eruptive stars called EXors. Their prototype, EX Lup, had its historically largest outburst in 2008. Spectroscopic evidence suggests that the mass accretion proceeds through the same magnetospheric accretion channels both in quiescence and in outburst but with different mass flux (Sicilia-Aguilar et al. 2012). To characterize for the first time EX Lup's magnetic field, we obtained spectropolarimetric monitoring for it with the CFHT/ESPaDOnS. We detected strong, poloidal magnetic field with a prominent cool polar cap and an accretion spot above it. We compared our results with numerical simulations, in order to check the applicability of the d'Angelo & Spruit model as an explanation of EX Lup's accretion outbursts. If EX Lup is a good proxy for the proto-Sun, similar magnetic field-disk interactions and outbursts might have happened during the early evolution of the Solar System as well.
机译:虽然Sun是一个安静而平衡的明星,但在前几百万年里,它拥有强大的磁场,并主动地从其外观环境中积累了腐蚀的材料。理论模型预测,在某些情况下,强磁星及其外观盘的相互作用可能导致在星形上增加增加的突发(D'Angelo&Spruit 2012)。这种现象的实例可以是一群名为前沿的年轻喷发恒星的成员。他们的原型是在2008年的历史上最大的突出。光谱证据表明,质量增量通过相同的磁磁性增生通道进行了静态和爆发,但具有不同的质量通量(Sicilia-Aguilar等,2012)。要为第一次出现EX LUP的磁场,我们通过CFHT / ESPADONS获得了它的光波罗敏监测。我们检测到具有突出的凉爽极帽和其上方的吸收点的强度磁场。我们将结果与数值模拟进行了比较,以检查D'Angelo&Spruit模型的适用性作为EX LUP的Accretion爆发的解释。如果前leup是原始太阳的良好代理,那么在太阳系的早期演变期间也可能发生类似的磁场盘相互作用和爆发。

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