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Radiation fields in moving media: effects of many spectral lines in AGN accretion disks

机译:运动介质中的辐射场:AGN吸积盘中许多谱线的影响

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Analytical solutions of the radiative transfer equation recently derived for differentially moving media allow the efficient inclusion of an arbitrarily large number of spectral lines both in a deterministic and in a stochastic way. For a deterministic line set and not too small velocities, a high computational speed-up is achieved if the solution is expressed not in terms of the extinction coefficient but by its much smoother wavelength integral. The assumption of a Poisson point process for the number of lines, combined with suitable distributions for the line positions and other line parameters, is a flexible presentation of the wavelength dependence of the line extinction coefficient which well describes deterministic "real" lines and requires only few parameters. The intricate connection between line properties and the emergent intensity can then be evaluated to a large part analytically. Assuming Lorentz profiles and a power law for the line strength distribution, we discuss the effect of many spectral lines on the radiation field of a typical AGN accretion disk, in particular, on the emerging radiation and on its diffusion limit holding in the interior. (C) 1999 Elsevier Science B.V. All rights reserved. [References: 6]
机译:最近针对差分运动介质导出的辐射传递方程的解析解允许以确定性和随机方式有效地包含任意数量的光谱线。对于确定性的线组而不是太小的速度,如果解决方案不是根据消光系数而是通过其更平滑的波长积分表示的,则可以实现较高的计算速度。对于线数的泊松点过程的假设,与线位置和其他线参数的适当分布相结合,是线消光系数的波长依赖性的灵活表示,可以很好地描述确定性“实”线,并且仅需要参数很少。然后,可以在很大程度上分析评估线型属性和出射强度之间的复杂联系。假设Lorentz轮廓和线强度分布的幂定律,我们讨论了许多光谱线对典型AGN吸积盘辐射场的影响,特别是对新兴辐射及其在内部的扩散极限的影响。 (C)1999 Elsevier Science B.V.保留所有权利。 [参考:6]

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