论文标题
弯曲的喷气运动。 I.轨道和进攻喷气机
Curved jet motion. I. Orbiting and precessing jets
论文作者
论文摘要
天体物理喷气机通常被视为弯曲或弯曲结构。我们还知道,不同的喷气源本质上可能是二进制的,这可能会导致喷气喷嘴,轨道运动或动力的定期定期运动。在这里,我们介绍了2D(M)HD模拟的结果,以研究进攻或绕喷射喷嘴如何影响高速射流的传播。我们对具有不同进动角,轨道周期或分离以及不同磁场强度的系统进行了参数研究。我们发现,这类喷嘴导致弯曲的喷射繁殖,这取决于定义喷射喷嘴的主要参数。我们从绕着喷嘴的喷嘴和S形喷头发现C形喷头。最初弯曲的射流运动在长时间和长距离的情况下,将宽阔的通道钻入环境气体,该通道充满了高速射流材料,但侧向运动受到抑制。强(纵向)磁场会湿润的射流曲率通过射流源的轨道运动进行。我们已经研究了整个喷气机和环境介质的力平衡,发现横向压力和气体压力梯度几乎平衡,但是曲率凹面侧的气压缺乏导致横向运动。磁张力不起作用。我们的结果是在代码单元中获得的,但是我们提供了比例关系,以便我们的结果可以应用于年轻的恒星,微观Quasars,Symbiotic Stars或AGN。
Astrophysical jets are often observed as bent or curved structures. We also know that the different jet sources may be binary in nature, which may lead to a regular, periodic motion of the jet nozzle, an orbital motion or precession. Here, we present the results of 2D (M)HD simulations in order to investigate how a precessing or orbiting jet nozzle affects the propagation of a high-speed jet. We have performed a parameter study of systems with different precession angles, orbital periods or separations, and different magnetic field strengths. We find that these kinds of nozzles lead to curved jet propagation which is determined by the main parameters that define the jet nozzle. We find C-shaped jets from orbiting nozzles and S-shaped jets from precessing nozzles. Over long time and long distances, the initially curved jet motion bores a broad channel into the ambient gas that is filled with high-speed jet material which lateral motion is damped, however. A strong (longitudinal) magnetic field can damp the jet curvature that is enforced by either precession of orbital motion of the jet sources. We have investigated the force balance across the jet and ambient medium and found that the lateral magnetic pressure and gas pressure gradients are almost balanced, but that a lack of gas pressure on the concave side of the curvature is leading to the lateral motion. Magnetic tension does not play a significant role. Our results are obtained in code units, but we provide scaling relations such that our results may be applied to young stars, micro-quasars, symbiotic stars or AGN.