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Radiative transfer in very optically thick circumstellar disks

机译:极光学厚度的星际盘中的辐射传递

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Aims. In this paper we present two efficient implementations of the diffusion approximation to be employed in MonteCarlo computations of radiative transfer in dusty media of massive circumstellar disks. The aim is to improve the accuracy of the computed temperature structure and to decrease the computation time. The accuracy, efficiency, and applicability of the methods in various corners of parameter space are investigated. The effects of using these methods on the vertical structure of the circumstellar disk as obtained from hydrostatic equilibrium computations are also addressed. Methods. Two methods are presented. First, an energy diffusion approximation is used to improve the accuracy of the temperature structure in highly obscured regions of the disk, where photon counts are low. Second, a modified random walk approximation is employed to decrease the computation time. This modified random walk ensures that the photons that end up in the high-density regions can quickly escape to the lower density regions, while the energy deposited by these photons in the disk is still computed accurately. A new radiative transfer code, MCMax, is presented in which both these diffusion approximations are implemented. These can be used simultaneously to increase both computational speed and decrease statistical noise. Results. We conclude that the diffusion approximations allow for fast and accurate computations of the temperature structure, vertical disk structure and observables of very optically thick circumstellar disks. Key words: radiative transfer - diffusion - stars: circumstellar matter
机译:目的在本文中,我们提出了弥散近似的两种有效实现方式,这些方法可用于蒙特卡洛计算大恒星盘尘埃介质中的辐射传递。目的是提高计算温度结构的准确性并减少计算时间。研究了该方法在参数空间各个角落的准确性,效率和适用性。还讨论了使用这些方法对静水压平衡计算获得的圆盘垂直结构的影响。方法。提出了两种方法。首先,使用能量扩散近似来提高光子计数较低的磁盘高度模糊区域中温度结构的精度。其次,采用改进的随机游走近似来减少计算时间。这种经过改进的随机游动确保了最终在高密度区域中产生的光子可以快速逃逸到较低密度区域,而这些光子在磁盘中沉积的能量仍然可以精确计算。提出了一种新的辐射转移码MCMax,其中实现了这两种扩散近似。这些可以同时使用,以提高计算速度并减少统计噪声。结果。我们得出的结论是,扩散近似值可以快速,准确地计算温度结构,垂直盘结构以及非常光学厚的星际盘的可观测值。关键词:辐射转移-扩散-恒星:星际物质

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