论文标题

水层观测所追踪的磁性水力动力磁盘风的快照

Snapshot of a magnetohydrodynamic disk wind traced by water maser observations

论文作者

Moscadelli, Luca, Sanna, Alberto, Beuther, Henrik, Oliva, André, Kuiper, Rolf

论文摘要

从黑洞到气态巨型行星的不同性质和大小的天体物理物体的形成涉及磁盘喷射系统,在该系统中,磁盘将质量积聚驱动到中央紧凑型物体上,而射流是沿着磁盘旋转轴的快速准直的弹射物。磁性水力动力学磁盘可以提供质量积聚与射血之间的联系,这对于确保从系统中去除多余的角动量并在中心对象上积聚至关重要。但是,到目前为止,我们一直缺乏磁盘风的直接观察证明。这项工作展示了围绕形成大量恒星的磁盘风的速度场的直接视图。我们的水层观测值达到了〜0.05 au的高空间分辨率,追踪了从绕构成恒星绕的磁盘中出现的单个流线的速度。我们发现,在磁盘中平面上方的低海拔处,该流量与磁盘中的发射点共旋转,与磁场中心加速度一致,在磁场中,气体沿着磁场线固定在磁盘上。除了共存点之外,该流动沿着螺旋磁场围绕磁盘旋转轴螺旋升起。我们已经对大型恒星的形成进行了(电阻性辐射性 - 长方形)磁流失动力学模拟,并记录了磁中心中心发射的喷气式喷气式飞机的发展,这些喷气喷气机具有与我们的观察结果一致的许多属性。

The formation of astrophysical objects of different nature and size, from black holes to gaseous giant planets, involves a disk-jet system, where the disk drives the mass accretion onto a central compact object and the jet is a fast collimated ejection along the disk rotation axis. Magnetohydrodynamic disk winds can provide the link between mass accretion and ejection, which is essential to ensure that the excess angular momentum is removed from the system and accretion onto the central object can proceed. However, up to now, we have been lacking direct observational proof of disk winds. This work presents a direct view of the velocity field of a disk wind around a forming massive star. Achieving a very high spatial resolution of ~0.05 au, our water maser observations trace the velocities of individual streamlines emerging from the disk orbiting the forming star. We find that, at low elevation above the disk midplane, the flow co-rotates with its launch point in the disk, in agreement with magneto-centrifugal acceleration where the gas is flung away along the magnetic field line anchored to the disk. Beyond the co-rotation point, the flow rises spiraling around the disk rotation axis along a helical magnetic field. We have performed (resistive-radiative-gravito-) magnetohydrodynamic simulations of the formation of a massive star and record the development of a magneto-centrifugally launched jet presenting many properties in agreement with our observations.

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