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Infrared Properties of Weak Radio Sources in the ρ Ophiuchi Molecular Cloud*

机译:蛇夫座分子云中弱无线电源的红外特性*

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We report mid-infrared ISOCAM observations for a sample of radio continuum sources in the ρ Ophiuchi molecular cloud core with unknown or poorly studied infrared counterparts. These data are combined with existing infrared photometry, including recently published ISOCAM data, for previously studied radio sources to investigate the evolutionary states of 35 radio-emitting young stars in the ρ Oph cloud core. About 50% of the radio stars are found to have class I, flat, or class II spectral energy distributions with near-infrared excesses arising from circumstellar disks. Their radio emission is most likely thermal emission from gas ionized by stellar winds. The remaining radio emitters are young stars with class III spectral energy distributions that lack infrared excesses and circumstellar disks. Their radio emission likely is nonthermal emission from magnetic surface activity. The lack of young stars with weak infrared excesses supports earlier suggestions that disk dissipation is rapid. Class III sources are twice as common as class II sources in this radio-selected sample in comparison with extinction-limited samples, which underscores the importance of radio surveys in obtaining a complete census of young stellar objects. The concentration of diskless class III objects in the high column-density molecular core, and their median age of 0.3 Myr derived from their positions in a Hertzsprung-Russell diagram, indicate they are contemporaries of class II objects which include the classical T Tauri stars. It appears that these class III objects have shorter disk survival times than class II objects in the cloud.
机译:我们报告ρOphiuchi分子云核心中无线电连续谱源样本的中红外ISOCAM观测结果,其红外对应物未知或研究不足。这些数据与现有的红外光度法(包括最近发布的ISOCAM数据)相结合,用于先前研究的无线电源,以研究ρOph云芯中35个发射辐射的年轻恒星的演化状态。发现约有50%的射电星具有I级,平直或II级频谱能量分布,且由星际盘引起的近红外过量。它们的无线电辐射很可能是由恒星风电离的气体产生的热辐射。其余的无线电发射器是具有III类光谱能量分布的年轻恒星,它们没有红外过量和星际盘。它们的无线电发射可能是磁性表面活性产生的非热发射。缺少红外过量弱的年轻恒星,这支持了磁盘消散迅速的早期建议。与消光有限的样本相比,该放射性选择样本中的III类来源是II类来源的两倍,这突显了无线电调查在获得完整的年轻恒星物体普查中的重要性。无盘III类物体在高列密度分子核中的浓度以及它们在赫兹普劳-罗素图中的位置得出的中位年龄为0.3 Myr,表明它们是包括经典T Tauri星在内的II类物体的同时代。看起来这些III类对象的磁盘生存时间比云中的II类对象要短。

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