论文标题
在存在宇宙射线和波浪的情况下流出
Outflows in the presence of cosmic rays and waves
论文作者
论文摘要
在流体动力学的背景下,研究了在宇宙射线影响下与重力电势的血浆流出或风。宇宙射线通过水磁波动与血浆相互作用。在此过程中,宇宙射线向上并通过等离子体扩散。我们采用了多流体模型,除了热等离子体,宇宙射线和自兴的阿尔芬波外,也被视为流体。我们寻求可能具有三流体(一个Alfven波)和四流体(两个Alfven波)模型的物理允许的稳态溶液,并在电位孔的底部具有给定边界条件。一般而言,有两类的流出,亚音速和超音速(相对于适当定义的声速)。没有宇宙射线扩散的三流体模型可以与经典恒星风问题相同,并作为参考模型。当包括宇宙射线扩散时,有两类的解决方案。其中一个类似于没有扩散的三流体模型,而当波浪枯萎和宇宙射线与等离子体相关时,其他表现也像在大距离处的热风。我们还检查了波浪阻尼机制的效果(例如非线性Landau阻尼)。粗略地说,超音速流出的效果要比亚音速流出小得多。
Plasma outflow or wind against a gravitational potential under the influence of cosmic rays is studied in the context of hydrodynamics. Cosmic rays interact with the plasma via hydromagnetic fluctuations. In the process, cosmic rays advect and diffuse through the plasma. We adopt a multi-fluid model in which besides thermal plasma, cosmic rays and self-excited Alfven waves are also treated as fluids. We seek possible physically allowable steady state solutions of three-fluid (one Alfven wave) and four-fluid (two Alfven waves) models with given the boundary conditions at the base of the potential well. Generally speaking, there are two classes of outflows, subsonic and supersonic (with respect to a suitably defined sound speed). Three-fluid model without cosmic ray diffusion can be studied in the same way as the classic stellar wind problem, and is taken as a reference model. When cosmic ray diffusion is included, there are two categories of solutions. One of them resembles the three-fluid model without diffusion, and the other behaves like thermal wind at large distances when the waves wither and cosmic rays are decoupled from the plasma. We also inspect the effect of wave damping mechanisms (such as, nonlinear Landau damping). Roughly speaking, the effect is much smaller in supersonic outflow than in subsonic outflow.