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ANGULAR MOMENTUM TRANSPORT BY ACOUSTIC MODES GENERATED IN THE BOUNDARY LAYER. I. HYDRODYNAMICAL THEORY AND SIMULATIONS

机译:在边界层中生成的声学模式下的角动量传输。一,水动力理论与模拟

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The nature of angular momentum transport in the boundary layers of accretion disks has been one of the central and long-standing issues of accretion disk theory. In this work we demonstrate that acoustic waves excited by supersonic shear in the boundary layer serve as an efficient mechanism of mass, momentum, and energy transport at the interface between the disk and the accreting object. We develop the theory of angular momentum transport by acoustic modes in the boundary layer, and support our findings with three-dimensional hydrodynamical simulations, using an isothermal equation of state. Our first major result is the identification of three types of global modes in the boundary layer. We derive dispersion relations for each of these modes that accurately capture the pattern speeds observed in simulations to within a few percent. Second, we show that angular momentum transport in the boundary layer is intrinsically nonlocal, and is driven by radiation of angular momentum away from the boundary layer into both the star and the disk. The picture of angular momentum transport in the boundary layer by waves that can travel large distances before dissipating and redistributing angular momentum and energy to the disk and star is incompatible with the conventional notion of local transport by turbulent stresses. Our results have important implications for semianalytical models that describe the spectral emission from boundary layers.
机译:吸积盘边界层中角动量传输的性质一直是吸积盘理论的中心和长期存在的问题之一。在这项工作中,我们证明了在边界层中由超音速剪切激发的声波可以作为有效的质量,动量和能量传递机制,作用在圆盘与吸积物体之间的界面上。我们开发了通过边界层中的声模传输角动量的理论,并使用等温状态方程通过三维流体动力学模拟来支持我们的发现。我们的第一个主要结果是识别边界层中的三种全局模式。我们为每种模式导出了色散关系,这些关系可以准确地将模拟中观察到的图案速度捕获到百分之几以内。其次,我们表明边界层中的角动量传输本质上是非局部的,并且由角动量的辐射驱动,这些角动量从边界层进入恒星和磁盘。边界层中的角动量传输的图片在传播和散发角动量和能量到磁盘和恒星之前可以传播很长的距离,这与传统的湍流局部传输概念不符。我们的结果对描述边界层光谱发射的半分析模型具有重要意义。

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