论文标题

两极分化的maser排放,源式法拉第旋转

Polarized Maser Emission with In-Source Faraday Rotation

论文作者

Tobin, Taylor L., Gray, Malcolm D., Kemball, Athol J.

论文摘要

我们讨论了天体物理层中极化的研究,并特别强调了与多普勒剖面相比,zeeman拆分很小的情况,从而融合了磁化磁化物之间的过渡。得出了分子响应的半古典理论,并与1和2束线性酶的辐射转移溶液耦合,从而导致一组非线性的代数方程,用于分子密度矩阵的元素。新的代码(Prism)实现数值方法来计算这些解决方案。使用Prism,我们证明了这种情况和更广泛的分裂之间的平滑传递。对于j = 1-0系统,具有基于$ v = 1的参数,j = 1-0 $的SIO过渡,我们研究了线性和圆极化的行为,这是传播轴和磁场之间的角度的函数,以及模型的光学深度或饱和状态。我们演示了如何通过Faraday旋转的存在来修改溶液,这是由各种自由电子产生的,而强大的Faraday旋转会导致STOKES-Q变化符号的其他角度。我们将结果与以前的许多模型进行比较,从W. Watson及其合着者的计算结果到Lankhaar的最新工作以及2019年的Vlemmings的最新工作,我们发现我们的结果通常与其他作者的其他作者一致。

We discuss studies of polarization in astrophysical masers with particular emphasis on the case where the Zeeman splitting is small compared to the Doppler profile, resulting in a blend of the transitions between magnetic substates. A semi-classical theory of the molecular response is derived, and coupled to radiative transfer solutions for 1 and 2-beam linear masers, resulting in a set of non-linear, algebraic equations for elements of the molecular density matrix. The new code, PRISM, implements numerical methods to compute these solutions. Using PRISM, we demonstrate a smooth transfer between this case and that of wider splitting. For a J=1-0 system, with parameters based on the $v=1, J=1-0$ transition of SiO, we investigate the behaviour of linear and circular polarization as a function of the angle between the propagation axis and the magnetic field, and with the optical depth, or saturation state, of the model. We demonstrate how solutions are modified by the presence of Faraday rotation, generated by various abundances of free electrons, and that strong Faraday rotation leads to additional angles where Stokes-Q changes sign. We compare our results to a number of previous models, from the analytical limits derived by Goldreich, Keeley and Kwan in 1973, through computational results by W. Watson and co-authors, to the recent work by Lankhaar and Vlemmings in 2019. We find that our results are generally consistent with those of other authors given the differences of approach and the approximations made.

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