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首页> 外文期刊>The Astrophysical journal >SPECTRALLY DISPERSED K-BAND INTERFEROMETRIC OBSERVATIONS OF HERBIG Ae/Be SOURCES: INNER DISK TEMPERATURE PROFILES
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SPECTRALLY DISPERSED K-BAND INTERFEROMETRIC OBSERVATIONS OF HERBIG Ae/Be SOURCES: INNER DISK TEMPERATURE PROFILES

机译:草药Ae / Be来源的色散K波段干涉测量:内盘温度曲线

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摘要

We use spectrally dispersed near-IR interferometry data to constrain the temperature profiles of sub-AU-sized regions of 11 Herbig Ae/Be sources. We find that a single-temperature ring does not reproduce the data well. Rather, models incorporating radial temperature gradients are preferred. These gradients may arise in a dusty disk, or may reflect separate gas and dust components with different temperatures and spatial distributions. Comparison of our models with broadband spectral energy distributions suggests the latter explanation. The data support the view that the near-IR emission of Herbig Ae/Be sources arises from hot circumstellar dust and gas in sub-AU-sized disk regions. Intriguingly, our derived temperature gradients appear systematically steeper for disks around higher mass stars. It is not clear, however, whether this reflects trends in relative dust/gas contributions or gradients within individual components.
机译:我们使用频谱分散的近红外干涉测量数据来约束11个Herbig Ae / Be源的非澳大利亚大小区域的温度曲线。我们发现单温度环不能很好地再现数据。相反,包含径向温度梯度的模型是首选。这些梯度可能出现在多尘盘中,或者可能反映出温度和空间分布不同的气体和粉尘成分。我们的模型与宽带频谱能量分布的比较表明了后者的解释。数据支持以下观点:Hertig Ae / Be源的近红外发射是由非AU大小的磁盘区域中的高温星尘和气体引起的。有趣的是,对于质量较高的恒星周围的盘,我们得出的温度梯度在系统上显得陡峭。但是,尚不清楚这是否反映了相对的粉尘/气体贡献趋势或单个组件内的梯度。

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