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ON THE VERTICAL STRUCTURE OF RADIATION-DOMINATED ACCRETION DISKS

机译:辐射增生盘的垂直结构

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摘要

The vertical structure of black hole accretion disks in which radiation dominates the total pressure is investigated using a three-dimensional radiation-MHD calculation. The domain is a small patch of disk centered 100 Schwarzschild radii from a black hole of 10~8 solar mass, and the stratified shearing-box approximation is used. Magnetorotational instability converts gravitational energy to turbulent magnetic and kinetic energy. The gas is heated by magnetic dissipation and by radiation damping of the turbulence, and cooled by diffusion and advection of radiation through the vertical boundaries. The resulting structure differs in several fundamental ways from the standard Shakura-Sunyaev picture. The disk consists of three layers. At the midplane, the density is large, and the magnetic pressure and total accretion stress are less than the gas pressure. In lower density surface layers that are optically thick, the magnetic pressure and stress are greater than the gas pressure but less than the radiation pressure. Horizontal density variations in the surface layers exceed an order of magnitude. Magnetic fields in the regions of greatest stress are buoyant, and dissipate as they rise, so the heating rate declines more slowly with height than the stress. Much of the dissipation occurs at low column depth, and the interior is cooler and less radiation-dominated than in the Shakura-Sunyaev model with the same surface mass density and flux. The mean structure is convectively stable.
机译:使用三维辐射-MHD计算研究了辐射占总压力的黑洞吸积盘的垂直结构。该区域是一个小圆盘斑块,其中心为太阳质量为10〜8的黑洞,中心为100 Schwarzschild半径,并使用分层剪切盒近似法。磁旋转不稳定性将重力能量转换为湍动的磁能和动能。气体通过磁耗散和湍流的辐射衰减而加热,并通过辐射通过垂直边界的扩散和对流进行冷却。最终的结构在几个基本方面与标准的Shakura-Sunyaev图片有所不同。磁盘由三层组成。在中平面处,密度大,并且磁压力和总积聚应力小于气压。在光学上较厚的较低密度的表面层中,磁压力和应力大于气压,但小于辐射压力。表层的水平密度变化超过一个数量级。应力最大的区域中的磁场是漂浮的,并且随着它们的升高而消散,因此加热速率随高度的降低比应力的降低更慢。在相同的表面质量密度和通量的情况下,与Shakura-Sunyaev模型相比,大部分耗散发生在低柱深处,并且内部更凉爽且辐射占主导地位。平均结构是对流稳定的。

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  • 来源
    《The Astrophysical journal》 |2004年第1pt2期|p.L45-L48|共4页
  • 作者

    N. J. TURNER;

  • 作者单位

    University of California, Department of Physics, Santa Barbara, CA 93106;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学;
  • 关键词

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