论文标题

MIRA中局部质量损失发作的证据

Evidence for localized onset of episodic mass loss in Mira

论文作者

Perrin, G., Ridgway, S. T., Lacour, S., Haubois, X., Thiebaut, E., Berger, J. P., Lacasse, M. G., Millan-Gabet, R., Monnier, J. D., Pedretti, E., Ragland, S., Traub, W.

论文摘要

我们报告了使用干涉光学望远镜阵列(IOTA)进行的多型镜干涉测量值,以提供H波段中LPV MIRA的图像。鉴于低连续性不透明度,该波长区域非常适合研究质量损失,这使得在恒星大气和包膜中很长的路径上观察到发射。观察到的可见性与一个简单的核心 - 挂车模型一致,以表示中心对象和扩展的分子层,但此外,它们表现出了实质性的不对称性。对图像重建软件的分析表明,不对称性与局部吸收贴片一致。观察到的不透明度与小尘土晶粒有暂定相关性,该尘埃晶粒将在多年的弹出过程中大幅增长。空间信息以及云的推导尘埃含量,已知的质量损失率和射速速度为扩展分子层的脉冲泵送提供了证据。云可以理解为在空间上的局部局部区域,非常靠近脉动的光环。观察到的质量损失可以由恒星周围的几个这样的活动区域提供。该结果提供了一个额外的线索,以更好地了解AGB恒星大气中灰尘产生的块状。它与脉动和对流组合在质量损失过程中起关键作用的情况兼容。

We report Multi-telescope interferometric measurements taken with the Interferometric Optical Telescope Array (IOTA) to provide imagery of the LPV Mira in the H-band. This wavelength region is well suited to studying mass loss given the low continuum opacity, which allows for emission to be observed over a very long path in the stellar atmosphere and envelope. The observed visibilities are consistent with a simple core-halo model to represent the central object and the extended molecular layers but, in addition, they demonstrate a substantial asymmetry. An analysis with image reconstruction software shows that the asymmetry is consistent with a localized absorbing patch. The observed opacity is tentatively associated with small dust grains, which will grow substantially during a multi-year ejection process. Spatial information along with a deduced dust content of the cloud, known mass loss rates, and ejection velocities provide evidence for the pulsational pumping of the extended molecular layers. The cloud may be understood as a spatially local zone of enhanced dust formation, very near to the pulsating halo. The observed mass loss could be provided by several such active regions around the star. This result provides an additional clue for better understanding the clumpiness of dust production in the atmosphere of AGB stars. It is compatible with scenarios where the combination of pulsation and convection play a key role in the process of mass loss.

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