论文标题

共旋转交互区域的无线电变异性螺纹岩轴风

Radio Variability from Co-Rotating Interaction Regions Threading Wolf-Rayet Winds

论文作者

Ignace, Richard, St-Louis, Nicole, Prinja, Raman

论文摘要

单个巨星的结构化风可以分为两组:随机结构和有组织的结构。尽管前者通常通过结块识别,但后者通常与旋转调制相关,尤其是共旋转相互作用区域(CIR)的范式。尽管CIR在紫外线带中进行了广泛的探索,并在X射线和光学上进行了适度的探索,但在这里我们评估了CIR结构的无线电变异性,假设在密集的风中假设自由无透明度。我们的目标是进行广泛的参数研究以评估观察性的可行性,为此,我们为CIR采用了一个现象学模型,该模型刺激了其他球形风。我们发现,在合理的假设下,可以在10%的水平上获得无线电变异性。折叠光曲线的详细结构不仅取决于CIR的曲率,CIR相对于风的密度对比度以及观察倾斜度,还取决于波长。比较不同波长的光曲线,我们发现幅度可以改变,波形可能存在相移,并且整个波形本身可以改变。可以利用这些特征来检测CIR在密集的热风中的存在。

The structured winds of single massive stars can be classified into two broad groups: stochastic structure and organized structure. While the former is typically identified with clumping, the latter is typically associated with rotational modulations, particularly the paradigm of Co-rotating Interaction Regions (CIRs). While CIRs have been explored extensively in the UV band, and moderately in the X-ray and optical, here we evaluate radio variability from CIR structures assuming free-free opacity in a dense wind. Our goal is to conduct a broad parameter study to assess the observational feasibility, and to this end, we adopt a phenomenological model for a CIR that threads an otherwise spherical wind. We find that under reasonable assumptions, it is possible to obtain radio variability at the 10% level. The detailed structure of the folded light curve depends not only on the curvature of the CIR, the density contrast of the CIR relative to the wind, and viewing inclination, but also on wavelength. Comparing light curves at different wavelengths, we find that the amplitude can change, that there can be phase shifts in the waveform, and the the entire waveform itself can change. These characterstics could be exploited to detect the presence of CIRs in dense, hot winds.

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