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Long-Term Variability in o Ceti and Other Mira Variables: Signs of Supergranular Convection?

机译:o CETI和其他MIRA变量的长期变异:超级对流的迹象?

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We describe our study of long-term variability of o Ceti (Mira A), the prototype of the Mira-type pulsating stars. Our study was originally undertaken to search for coherent long-period variability, but the results of our analysis didn't uncover this. However, we detected a low-frequency "red noise" in the Fourier spectrum of the o Ceti century - long long light curve. We have since found similar behavior in other Miras and pulsating giant stars and have begun a study of a large sample of Mira variables. Similar red noise has been previously detected in red supergiants and attributed to supergranular convection. Its presence in Miras suggests the phenomenon may be ubiquitous in cool giant pulsators. These results support high-angular resolution observations of Miras and supergiants showing asymmetries in their surface brightness distributions, which may be due to large supergranular convection cells. Theoretical modeling, and numerical simulations of pulsation processes in late-type giants and supergiants should therefore take into account the effects of deep convection and large supergranular structures, which in turn may provide important insights into the behavior of Miras and other giant and supergiant pulsators. In this work, we summarize our results for o Ceti, present preliminary results of our broader study of Mira variables, and discuss how the results of this study may be used by future studies of AGB variables.
机译:我们描述了我们对o CETI(MIRA A)的长期变异性的研究,Mira型脉动恒星的原型。我们的研究最初是为了寻找连贯的长期变异性,但我们的分析结果没有发现这一点。然而,我们在o Ceti Century的傅立叶频谱中检测到低频“红噪声”。我们已经发现了其他Miras和脉动巨星的类似行为,并且已经开始研究大量的Mira变量。先前在红色超差异中检测到类似的红噪声并归因于超级对流。它在Miras的存在表明,这种现象可能在凉爽的巨型脉动振动器中普遍存在。这些结果支持Miras和超巨型的高角度分辨率观察,其表面亮度分布在其表面亮度分布中,这可能是由于大型超血管对流细胞。因此,理论上建模和最初型巨型和超巨星脉动过程的数值模拟应考虑到深度对流和大型超级结构的影响,这反过来可能会对Miras和其他巨型和超巨型脉冲器的行为提供重要的见解。在这项工作中,我们总结了我们对o CETI的结果,目前我们对MIRA变量的更广泛研究的初步结果,并讨论了该研究的结果可以由AGB变量的未来研究使用。

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