论文标题
径向自相似的非权利性MHD流出模型的研究:参数空间探索和应用于水喷泉W43A
A study of radial self-similar non-relativistic MHD outflow models: parameter space exploration and application to the water fountain W43A
论文作者
论文摘要
流出跨越各种动力学特性和空间扩展,现在已经与各种积聚的天体物理物体相关联,从活跃星系的核心的超质量黑洞到年轻的恒星物体。这种流出的作用是产生它们的系统演变的关键,因为它们从靠近中心物体的区域中提取了轨道材料和角动量的一部分,并将它们释放到周围环境中。发射机制及其对环境的影响的细节对于了解各个来源的演变以及不同类型的流出发布系统之间的相似性至关重要。我们在半分析上求解了非相关主义,理想的磁性水力学(MHD)方程,描述了使用我们的新数值方案从带有磁场螺纹的旋转磁盘发射的外流。我们在这里介绍了大量新解决方案样本的参数研究。我们研究了导致成功发射JET并讨论其全球性能的不同力组合。我们展示了如何将这些溶液应用于水上喷泉W43A的流出,我们在两个对称的水层发射区域的位置上对磁场,密度和流速的观察限制。
Outflows, spanning a wide range of dynamical properties and spatial extensions, have now been associated with a variety of accreting astrophysical objects, from supermassive black holes at the core of active galaxies to young stellar objects. The role of such outflows is key to the evolution of the system that generates them, for they extract a fraction of the orbiting material and angular momentum from the region close to the central object and release them in the surroundings. The details of the launching mechanism and their impact on the environment are fundamental to understand the evolution of individual sources and the similarities between different types of outflow-launching systems. We solve semi-analytically the non-relativistic, ideal, magnetohydrodynamics (MHD) equations describing outflows launched from a rotating disk threaded with magnetic fields using our new numerical scheme. We present here a parameter study of a large sample of new solutions. We study the different combinations of forces that lead to a successfully launched jet and discuss their global properties. We show how these solutions can be applied to the outflow of the water fountain W43A for which we have observational constraints on magnetic field, density and velocity of the flow at the location of two symmetrical water maser emitting regions.