论文标题

甲醇果酱的极化特性

Polarization properties of methanol masers

论文作者

Dall'Olio, Daria, Vlemmings, Wouter, Lankhaar, Boy, Surcis, Gabriele

论文摘要

(删节的)天文学群已经是研究磁场多年的有效工具。特别是,甲醇可用于探测原恒星的不同部分,例如增生盘和流出,因为它会在大型恒星形成区域中产生最强,最常见的masers之一。我们根据新计算的甲醇LandéG因子并考虑超精细成分研究了选定的甲醇Maser跃迁的极化特性。我们将结果与以前的观察结果进行了比较,并评估了首选的超精细泵送和非Zeman效应的效果。我们使用辐射传输代码冠军进行模拟。我们发现线性和圆极化部分对超精细转变的依赖性。首选的超精细泵送可以解释一些高水平的线性和圆形极化,以及在观察到的V-Profiles的S形中看到的一些特殊特征。甲醇果酱没有显着影响非Zeman效应。我们的模型表明,对于甲醇Maser的发射,线性和圆形极化百分比都取决于高精细的转变以及泵送的程度。由于非Zeman效应在高亮度温度的高值下变得更加相关,因此必须良好的估计数量和Maser横梁角度。对亮度温度的更好限制将有助于了解非Zeman效应对观察到的极化百分比的贡献程度。为了检测单独的超精细分量,需要明显小于超精细分离的固有热线宽度。

(Abridged) Astronomical masers have been effective tools to study magnetic fields for many years. In particular, methanol can be used to probe different parts of protostars such as accretion discs and outflows, since it produces one of the strongest and the most commonly observed masers in massive star-forming regions. We investigate the polarization properties of selected methanol maser transitions in light of newly calculated methanol Landé g-factors and considering hyperfine components. We compare our results with previous observations and we evaluate the effect of preferred hyperfine pumping and non-Zeeman effects. We run simulations using the radiative transfer code CHAMP. We find a dependence of linear and circular polarization fractions on the hyperfine transitions. Preferred hyperfine pumping can explain some high levels of linear and circular polarization and some of the peculiar features seen in the S-shape of observed V-profiles. Methanol masers are not significantly affected by non-Zeeman effects. Our models show that for methanol maser emission, both the linear and circular polarization percentages depend on which hyperfine transition is masing and the degree to which it is being pumped. Since non-Zeeman effects become more relevant at high values of brightness temperatures, it is important to obtain good estimates of these quantities and on maser beaming angles. Better constraints on the brightness temperature will help in understand about the extent to which non-Zeeman effects contribute to the observed polarization percentages. In order to detect separate hyperfine components, an intrinsic thermal line width significantly smaller than the hyperfine separation is required.

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