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SPITZER OBSERVATIONS OF THE ORION OB1 ASSOCIATION: SECOND-GENERATION DUST DISKS AT 5-10 Myr

机译:猎户座OB1协会的斯派泽观测:第二代尘埃盘在5-10迈尔

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We report new Spitzer observations of intermediate-mass stars in two regions of the Orion OB1 association located in the subassociations OB1a (~10 Myr) and OB1b (~5 Myr). In a representative sample of stars earlier than F5 of both stellar groups, we find a population of stars surrounded of debris disks, without excess in the IRAC bands and without emission lines in their optical spectra, but with a varying degree of 24 μm excess. Comparing our samples with 24 μm observations of intermediate-mass stars in other stellar groups, spanning a range of ages from 2.5 to 150 Myr, we find that debris disks are more frequent and have larger 24 μm excess at 10 Myr (OB1a). This trend agrees with predictions of models of evolution of solids in the outer regions of disks ( > 30 AU), where large icy objects (~1000 km) begin to form at ~10 Myr; the presence of these objects in the disk initiates a collisional cascade, producing enough dust particles to explain the relatively large 24 μm excess observed in OB1a. The dust luminosity observed in the stellar groups older than 10 Myr declines roughly as predicted by collisional cascade models. Combining Spitzer observations, optical spectra, and 2MASS data, we found a new Herbig Ae/Be star (HD 290543) and a star (HD 36444) with a large 24 μm excess, both in OB1b. This last object could be explained as a intermediate stage between HAeBe and true debris systems or as a massive debris disk produced by a collision between two large objects ( > 1000 km).
机译:我们报告了Orion OB1关联的两个区域中位于子关联OB1a(〜10 Myr)和OB1b(〜5 Myr)中的中质星的新Spitzer观测结果。在两个恒星组的F5之前的代表性恒星样本中,我们发现了一群被碎片盘围绕的恒星,在IRAC谱带中没有多余的光,在光谱上也没有发射线,但是有不同程度的24μm过量。将我们的样本与其他恒星中中等质量恒星的24μm观测值(范围从2.5到150 Myr)进行比较,我们发现碎片盘更为频繁,在10 Myr(OB1a)时碎片盘更大(24μm)。这种趋势与盘的外部区域(> 30 AU)中固体演化模型的预测相吻合,在该模型中,约10 Myr处开始形成大的冰状物体(约1000 km)。磁盘中这些物体的存在会引发碰撞级联,产生足够的尘埃颗粒,以解释OB1a中观察到的相对较大的24μm过量颗粒。如碰撞级联模型所预测的那样,在年龄大于10 Myr的恒星组中观察到的尘埃光度大致下降。结合Spitzer的观测值,光谱和2MASS数据,我们在OB1b中发现了一个新的Herbig Ae / Be星(HD 290543)和一个星(HD 36444),它们的星空超出了24μm。最后一个物体可以解释为HAeBe与真实碎片系统之间的中间阶段,也可以解释为两个大物体(> 1000 km)之间碰撞产生的巨大碎片盘。

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