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FitSKIRT: genetic algorithms to automatically fit dusty galaxies with a Monte Carlo radiative transfer code

机译:FitSKIRT:遗传算法可自动将尘埃星系与蒙特卡洛辐射转移码拟合

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We present FitSKIRT, a method to efficiently fit radiative transfer models to UV/optical images of dusty galaxies. These images have the advantage that they have better spatial resolution compared to FIR/submm data. FitSKIRT uses the GAlib genetic algorithm library to optimize the output of the SKIRT Monte Carlo radiative transfer code. Genetic algorithms prove to be a valuable tool in handling the multi- dimensional search space as well as the noise induced by the random nature of the Monte Carlo radiative transfer code. FitSKIRT is tested on artificial images of a simulated edge-on spiral galaxy, where we gradually increase the number of fitted parameters. We find that we can recover all model parameters, even if all 11 model parameters are left unconstrained. Finally, we apply the FitSKIRT code to a V-band image of the edge-on spiral galaxy NGC?4013. This galaxy has been modeled previously by other authors using different combinations of radiative transfer codes and optimization methods. Given the different models and techniques and the complexity and degeneracies in the parameter space, we find reasonable agreement between the different models. We conclude that the FitSKIRT method allows comparison between different models and geometries in a quantitative manner and minimizes the need of human intervention and biasing. The high level of automation makes it an ideal tool to use on larger sets of observed data.
机译:我们提出FitSKIRT,这是一种有效地将辐射传递模型拟合到尘埃星系的UV /光学图像的方法。这些图像的优势在于,与FIR / submm数据相比,它们具有更好的空间分辨率。 FitSKIRT使用GAlib遗传算法库来优化SKIRT蒙特卡洛辐射转移代码的输出。事实证明,遗传算法是处理多维搜索空间以及由蒙特卡洛辐射转移码的随机性引起的噪声的宝贵工具。 FitSKIRT在模拟的边缘螺旋星系的人造图像上进行了测试,我们逐渐增加了拟合参数的数量。我们发现,即使所有11个模型参数都不受约束,我们也可以恢复所有模型参数。最后,我们将FitSKIRT代码应用于边缘旋涡星系NGC?4013的V带图像。先前,其他作者已经使用辐射转移码和优化方法的不同组合对这个星系进行了建模。给定不同的模型和技术以及参数空间中的复杂性和简并性,我们发现不同模型之间存在合理的一致性。我们得出的结论是,FitSKIRT方法可以定量地比较不同模型和几何形状,并最大程度地减少了人工干预和偏见的需要。高度的自动化使其成为处理大量观测数据的理想工具。

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