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Spiral-driven accretion in protoplanetary discs - II. Self-similar solutions

机译:原行星盘中螺旋驱动的吸积-II。自相似的解决方案

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摘要

Context. Accretion discs are ubiquitous in the Universe, and it is crucial to understand how angular momentum and mass are radially transported in these objects. Aims. Here, we study the role played by non-linear spiral patterns within hydrodynamical and non-self-gravitating accretion discs assuming that external disturbances such as infall onto the disc may trigger them. Methods. To do so, we computed self-similar solutions that describe discs in which a spiral wave propagates. These solutions present shocks and critical sonic points that were analyzed. Results. We calculated the wave structure for all allowed temperatures and for several spiral shocks. In particular, we inferred the angle of the spiral pattern, the stress it exerts on the disc, and the associated flux of mass and angular momentum as a function of temperature. We quantified the rate of angular momentum transport by means of the dimensionless α parameter. For the thickest disc we considered (corresponding to h / r values of about one-third), we found values of α as high as 0.1 that scaled with the temperature T such that α ∝ T ~(3 / 2) ∝ ( h / r )~(3) . The spiral angle scales with the temperature as arctan( r / h ) . Conclusions. These solutions suggests that perturbations occurring at disc outer boundaries, such as perturbations due to infall motions, can propagate deep inside the disc and therefore should not be ignored, even when considering small radii.
机译:上下文。吸积盘在宇宙中无处不在,因此了解角动量和质量如何在这些物体中径向传输至关重要。目的在这里,我们假设非线性螺旋模式在流体动力和非自重吸积盘中所起的作用,假设外部干扰(例如跌落到盘上)可能会触发它们。方法。为此,我们计算了自相似解,该解描述了螺旋波在其中传播的光盘。这些解决方案提供了经过分析的冲击和临界音点。结果。我们计算了所有允许温度和几次螺旋冲击的波结构。特别是,我们推断出螺旋形图案的角度,它在圆盘上施加的应力以及相关的质量通量和角动量随温度的变化。我们通过无量纲α参数量化了角动量的传输速率。对于我们考虑过的最厚的圆盘(对应于大约三分之一的h / r值),我们发现随温度T缩放的α值高达0.1,使得α∝ T〜(3/2)∝(h / r)〜(3)。螺旋角与温度成反正比(arctan(r / h))。结论。这些解决方案表明,在圆盘外边界处发生的扰动(例如由于跌落运动引起的扰动)可能在圆盘内部传播较深,因此即使考虑较小的半径也不应忽略。

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