论文标题

原始星云的变异性:VII。五个中型,富氧或混合化学后的光曲线研究后-AGB/后-RGB对象

Variability in Proto-Planetary Nebulae: VII. Light Curve Studies of Five Medium-bright, Oxygen-rich or Mixed-chemistry Post-AGB/Post-RGB Objects

论文作者

Hrivnak, Bruce J., Henson, Gary, Hillwig, Todd C., Lu, Wenxian, Nault, Kristie A., Volk, Kevin

论文摘要

我们已经监视了十年间隔的五个进化恒星的光变化,其中中红外过剩。所有五个物体似乎都有富氧或混合富含氧气和富含碳的化学物质。它们都在光线下有所不同:在$ \ sim $ 0.2 mag的少数范围内,在$ \ sim $ 0.7 mag的范围内排名第五。光谱类型的范围从G2到B0。在三个凉爽的脉动中首次发现周期性搏动,IRAS 18075 $ - $ 0924(123天),19207 $+$+$ 2023(96天)和20136年$+$+$ 1309(142天)。在更热的周期性中没有明显的周期性,但它们的时间范围较短几天或更短。两个还显示了一些长期定期变化的证据($ \ sim $ 4年)。三个似乎是原始星云,在恒星进化后的临时巨型分支(后AGB)阶段。它们的光变化与先前研究的PPNE中的温度,脉动周期和脉动振幅之间的关系一般一致。但是,其他两个似乎具有太低的光度(1000 $ - $ 1500 l $ _ {sun} $),基于Gaia距离,以至于无法处于后阶段。取而代之的是,它们似乎是最近确定的尘土飞扬的红色后巨型分支星星的银河系类似物,在麦哲伦云中发现,这很可能因与二元同伴的互动而中断。如果是这种情况,那么这些将是在银河系中标识的第一个尘土飞扬的RGB物体之一。

We have monitored over a ten-year interval the light variations of five evolved stars with very large mid-infrared excesses. All five objects appear to have oxygen-rich or mixed oxygen-rich and carbon-rich chemistries. They all vary in light: four over a small range of $\sim$0.2 mag and the fifth over a larger range of $\sim$0.7 mag. Spectral types range from G2 to B0. Periodic pulsations are found for the first time in the three cooler ones, IRAS 18075$-$0924 (123 days), 19207$+$2023 (96 days), and 20136$+$1309 (142 days). No significant periodicity is found in the hotter ones, but they appear to vary on a shorter time scale of a few days or less. Two also show some evidence of longer-term periodic variations ($\sim$4 yrs). Three appear to be proto-planetary nebulae, in the post-asymptotic giant branch (post-AGB) phase of stellar evolution. Their light variations are in general agreement with the relationships between temperature, pulsation period, and pulsation amplitude found in previously studied PPNe. The other two, however, appear to have too low a luminosity (1000$-$1500 L$_{sun}$), based on Gaia distances, to be in the post-AGB phase. Instead, they appear to be Milky Way analogues of the recently identified class of dusty post-red giant branch stars found in the Magellanic Clouds, which likely had their evolution interrupted by interaction with a binary companion. If this is the case, then these would be among the first dusty post-RGB objects identified in the Milky Way Galaxy.

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