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Polarized radiative transfer modeling of warped and clumpy dusty tori

机译:弯曲且结块的粉尘托里的极化辐射传递模型

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Context. Active galactic nuclei (AGN) are anisotropic objects surrounded by an optically thick equatorial medium whose true geometry still defies observers. Aims. We aim to explore the optical scattering-induced polarization that emerges from clumpy and warped dusty tori to check whether they can fit the unified model predictions. Methods. We ran polarized radiative transfer simulations in a set of warped and non-warped clumpy tori to explore the differences induced by distorted dust distributions. We then included warped tori in a more complex model representative of an AGN to check, using polarimetry and imaging methods, whether warps can reproduce the expected polarization dichotomy between Seyfert-I and Seyfert-II AGN. Results. The main results from our simulations highlight that isolated warped structures imprint the polarization degree and angle with distinctive signatures at Seyfert-I orientations. Included in an AGN model, the signatures of warps are easily (but not always) washed out by multiple scattering in a clumpy environment. Imaging polarimetry may help to detect warped tori, but we prove that warps can exist in AGN circumnuclear regions without contradicting observations. Conclusions. Two warped tori with a non-significant difference in geometry in terms of photometry or spectroscopy can have entirely different signatures in polarimetry. Testing the geometry of any alternative model to the usual dusty torus using polarized radiative transfer is a necessary approach to verify or reject a hypothesis.
机译:上下文。活跃的银河原子核(AGN)是被光学厚的赤道介质包围的各向异性物体,其真实的几何形状仍使观察者感到吃惊。目的我们的目的是探索从块状和扭曲的尘土托里出现的光散射引起的偏振,以检查它们是否适合统一的模型预测。方法。我们在一组翘曲的和不翘曲的块状花托中进行了极化辐射传输模拟,以探索由变形的粉尘分布引起的差异。然后,我们将翘曲的托里包含在一个更复杂的模型中,该模型代表AGN,使用极化和成像方法检查翘曲是否可以重现Seyfert-I和Seyfert-II AGN之间的预期极化二分法。结果。我们的模拟的主要结果表明,孤立的翘曲结构在Seyfert-I方向上以独特的特征印记了偏振度和角度。包含在AGN模型中的扭曲变形的特征很容易(但并不总是)在块状环境中被多次散射冲掉。成像极化仪可能有助于检测扭曲的托里,但是我们证明了扭曲可以存在于AGN周围核区域,而不会与观察结果相矛盾。结论。在光度学或光谱学上在几何学上没有显着差异的两个扭曲的托里可以在偏振光学上具有完全不同的特征。使用极化辐射转移测试通常尘土飞扬的圆环的任何替代模型的几何形状是验证或否定假设的必要方法。

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