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Benchmark problems for continuum radiative transfer - High optical depths, anisotropic scattering, and polarisation

机译:连续辐射传输的基准问题-高光学深度,各向异性散射和偏振

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摘要

Aims. Solving the continuum radiative transfer equation in high opacity media requires sophisticated numerical tools. In order to test the reliability of such tools, we present a benchmark of radiative transfer codes in a 2D disc configuration. Methods. We test the accuracy of seven independently developed radiative transfer codes by comparing the temperature structures, spectral energy distributions, scattered light images, and linear polarisation maps that each model predicts for a variety of disc opacities and viewing angles. The test cases have been chosen to be numerically challenging, with midplane optical depths up 106, a sharp density transition at the inner edge and complex scattering matrices. We also review recent progress in the implementation of the Monte Carlo method that allow an efficient solution to these kinds of problems and discuss the advantages and limitations of Monte Carlo codes compared to those of discrete ordinate codes. Results. For each of the test cases, the predicted results from the radiative transfer codes are within good agreement. The results indicate that these codes can be confidently used to interpret present and future observations of protoplanetary discs. Key words: radiative transfer - circumstellar matter - accretion, accretion disks - planetarysystems: protoplanetary disks - methods: numerical
机译:目的解决高不透明介质中的连续辐射传递方程需要复杂的数值工具。为了测试此类工具的可靠性,我们提供了2D光盘配置中的辐射传输代码基准。方法。我们通过比较温度模型,光谱能量分布,散射光图像和线性偏振图来测试七个独立开发的辐射转移码的准确性,每种模型针对各种光盘不透明度和视角预测了线性偏振图。选择这些测试用例在数值上具有挑战性,中间平面的光学深度可达106,内边缘处的密度转换明显,并且散射矩阵复杂。我们还回顾了蒙特卡洛方法的实现方面的最新进展,该方法可以有效解决此类问题,并讨论了蒙特卡洛代码与离散纵坐标代码相比的优点和局限性。结果。对于每个测试用例,辐射传输代码的预测结果均在良好的一致性之内。结果表明,这些代码可以放心地用于解释当前和将来对原行星盘的观测。关键词:辐射传递-绕星物质-吸积,吸积盘-行星系统:原行星盘-方法:数值

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