论文标题

门户 - 三维极化(子)毫米辐射转移

PORTAL--three-dimensional polarized (sub)millimeter line radiative transfer

论文作者

Lankhaar, Boy, Vlemmings, Wouter

论文摘要

语境。磁场对于许多天体物理过程的动力学很重要,通常可以通过极化观测来研究。现代(子)毫米望远镜设施的偏振学干涉能力使得获得分子线极化的详细速度解析图。为了正确分析这些信息,以获取有关磁场的信息,必须开发自适应三维极化线辐射传递模型。目标。我们旨在开发一个易于使用的程序,以模拟磁化的天体物理区域中的分子和原子(亚)毫米线的极化图,例如原恒星磁盘,情节信封或分子云。方法。通过将辐射场的局部各向异性视为唯一的比对机制,我们可以通过仅利用此模拟的融合输出来对常规线辐射传递模拟内部分子或原子种类的比对进行建模。对齐的分子或原子态的计算随后可以用来射线追踪三维模拟的极化图。结果。我们提出了一个三维辐射传递代码,即适合线(门户)的极化辐射转移,该传输可以通过任意形态的磁场模拟线发射中极化的出现。我们的模型可以在独立模式下使用LTE激发,但是在处理常规三维(非极化)线辐射传输模型代码的输出时,最好使用它。我们介绍了多个三维磁场形态的折叠球和原行星磁盘的测试用例的光谱极化图。

Context. Magnetic fields are important to the dynamics of many astrophysical processes and can typically be studied through polarization observations. Polarimetric interferometry capabilities of modern (sub)millimeter telescope facilities have made it possible to obtain detailed velocity resolved maps of molecular line polarization. To properly analyze these for the information they carry regarding the magnetic field, the development of adaptive three-dimensional polarized line radiative transfer models is necessary. Aims. We aim to develop an easy-to-use program to simulate the polarization maps of molecular and atomic (sub)millimeter lines in magnetized astrophysical regions, such as protostellar disks, circumstellar envelopes, or molecular clouds. Methods. By considering the local anisotropy of the radiation field as the only alignment mechanism, we can model the alignment of molecular or atomic species inside a regular line radiative transfer simulation by only making use of the converged output of this simulation. Calculations of the aligned molecular or atomic states can subsequently be used to ray trace the polarized maps of the three-dimensional simulation. Results. We present a three-dimensional radiative transfer code, POlarized Radiative Transfer Adapted to Lines (PORTAL), that can simulate the emergence of polarization in line emission through a magnetic field of arbitrary morphology. Our model can be used in stand-alone mode, assuming LTE excitation, but it is best used when processing the output of regular three-dimensional (nonpolarized) line radiative transfer modeling codes. We present the spectral polarization map of test cases of a collapsing sphere and protoplanetary disk for multiple three-dimensional magnetic field morphologies.

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