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A LARGE INFRARED SHELL ASSOCIATED WITH BI CRUCIS

机译:与BI CRUCIS相关的大型红外外壳

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摘要

Spitzer IRAC and MIPS images reveal a large dust emission feature ~6' in diameter which appears to be a shell in close proximity to, and perhaps physically related to, the D-type Mira symbiotic BI Cru. Smaller optical lobes are already known to be emanating from some symbiotics including BI Cru. However, this is the first extended structure found in the IR which is associated with a symbiotic Mira system. The IR shell of BI Cru is more than 5 times larger in arc size than the star's optical lobe. Published distance estimates imply that the IR shell is ~4 to ~8 pc in diameter, which is larger than the largest optical lobe known to be associated with any Mira symbiotic system. The large disparity between its IR and optical shell sizes, along with what appear to be multiple intersecting arcs, suggest that BI Cru has undergone multiple mass-loss episodes. A trend of rapidly increasing brightness toward longer wavelengths, along with a much more diffuse structure at 70 μm than at shorter wavelengths, and suggests a greater abundance of relatively colder and older dust which may be the remnant of earlier mass outflows.
机译:Spitzer IRAC和MIPS图像显示了一个大的尘埃排放特征,直径约6',似乎是一个壳,与D型Mira共生生物BI Cru十分接近,或者在物理上相关。已知一些较小的视瓣是由BI Cru等共生物发出的。但是,这是IR中发现的第一个与共生Mira系统有关的扩展结构。 BI Cru的IR壳的弧度比恒星的光学波瓣大5倍以上。公开的距离估计值暗示IR壳的直径为〜4至〜8 pc,比已知与任何Mira共生系统有关的最大光学瓣大。其IR和光学外壳尺寸之间的巨大差异,以及似乎是多个相交的弧线,表明BI Cru经历了多次质量损失事件。朝着更长波长的亮度迅速增加的趋势,以及在70μm处比在短波长处具有更大的扩散结构,并表明相对较冷和较旧的灰尘有更多的丰度,这可能是较早的质量流出的残余。

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