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首页> 外文期刊>The Astrophysical journal >R CrB CANDIDATES IN THE SMALL MAGELLANIC CLOUD: OBSERVATIONS OF COLD, FEATURELESS DUST WITH THE SPITZER INFRARED SPECTROGRAPH
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R CrB CANDIDATES IN THE SMALL MAGELLANIC CLOUD: OBSERVATIONS OF COLD, FEATURELESS DUST WITH THE SPITZER INFRARED SPECTROGRAPH

机译:小麦哲伦云中的R CrB候选物:使用斯派泽红外光谱图观察冷,无特征的粉尘

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摘要

We observed 36 evolved stars in the Small Magellanic Cloud (SMC) using the low-resolution mode of the Infrared Spectrograph (IRS) on the Spitzer Space Telescope. Two of these stars, MSX SMC 014 and 155, have nearly featureless spectral energy distributions over the IRS wavelength range (5.2-35 μm) and F_v peaking at ~8-9 μm. The data can be fit by sets of amorphous carbon shells or by single 600-700 K blackbodies. The most similar spectra found in extant spectral databases are of R CrB, although the spectral structure seen in R CrB and similar stars is much weaker or absent in the SMC sources. Both SMC stars show variability in the near-infrared. Ground-based visual spectra confirm that MSX SMC 155 is carbon-rich, as expected for R CrB (RCB) stars, and coincides with an object previously identified as an RCB candidate. The temperature of the underlying star is lower for MSX SMC 155 than for typical RCB stars. The strength of the C_2 Swan bands and the low temperature suggest that it may be a rare DY Per-type star, only the fifth such identified. MSX SMC 014 represents a new RCB candidate in the SMC, bringing the number of RCB candidates in the SMC to six. It is the first RCB candidate discovered with Spitzer and the first identified by its infrared spectral characteristics rather than its visual variability.
机译:我们使用Spitzer太空望远镜上的红外光谱仪(IRS)的低分辨率模式在小麦哲伦星云(SMC)中观察到36颗恒星。其中两颗MSX SMC 014和155,在IRS波长范围(5.2-35μm)内具有几乎没有特征的光谱能量分布,并且F_v在〜8-9μm处达到峰值。数据可以通过无定形碳壳组或单个600-700 K黑体来拟合。在现有光谱数据库中发现的最相似光谱是R CrB,尽管在SMC来源中R CrB和类似恒星中看到的光谱结构弱得多或不存在。 SMC的两个恒星都显示出近红外的可变性。基于地面的视觉光谱证实,对于R CrB(RCB)星预期,MSX SMC 155富含碳,并且与先前确定为RCB候选物的物体重合。对于MSX SMC 155,底层恒星的温度比典型的RCB恒星的温度低。 C_2天鹅带的强度和低温表明它可能是稀有的DY Per型恒星,只有五分之一被确定。 MSX SMC 014代表SMC中的新RCB候选,从而使SMC中的RCB候选数增加到6。它是Spitzer发现的第一个RCB候选物,也是第一个通过其红外光谱特征而不是视觉可变性进行识别的候选物。

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