论文标题

128个新赫尔比格星星的识别和光谱表征

Identification and spectroscopic characterization of 128 new Herbig stars

论文作者

Vioque, Miguel, Oudmaijer, René D., Wichittanakom, Chumpon, Mendigutía, Ignacio, Baines, Deborah, Panić, Olja, Iglesias, Daniela, Miley, James, Pérez-Martínez, Ricardo

论文摘要

我们提出了来自Vioque等人目录中的145个高质量前序列序列的光谱观测。 (2020)。通过这些,我们提供了128种来源的Herbig性质的证据。这将类的已知对象数量增加到$ \ sim50 \%$。我们使用Spectra和Gaia EDR3数据确定了这些源的恒星参数。新来源分布在质量和年龄上,有23个来源在$ 4 $ - $ 8 $ m $ _ {\ odot} $和32个以上的资源$ 8 $ m $ _ {\ odot} $之间。增生率是从H $α$和H $β$ Luminosities推断出的104个新赫尔比格斯的。这些吸积率与先前的类似估计相结合,使我们能够使用有史以来最大的样本来分析Herbig恒星的增生性能。我们为存在$ \ sim3 $ - $ 4 $ m $ _ {\ odot} $的积聚属性的存在提供了进一步的支持,这已经报道了先前已知的赫比格星星。我们重新估计潜在的积分属性中断为$ 3.87^{+0.38} _ { - 0.96} $ M $ _ {\ odot} $。正如对先前已知的Herbig恒星所观察到的那样,新的Herbig星星的样本独立地表明,对于质量高于$ \ sim7 $ m $ _ {\ odot} $的质量来源的强烈内向光蒸发。这些观察结果为Vioque等人的准确性提供了强大的观察支持。 (2020)Herbig候选人的目录。

We present optical spectroscopy observations of 145 high-mass pre-main sequence candidates from the catalogue of Vioque et al. (2020). From these, we provide evidence for the Herbig nature of 128 sources. This increases the number of known objects of the class by $\sim50\%$. We determine the stellar parameters of these sources using the spectra and Gaia EDR3 data. The new sources are well distributed in mass and age, with 23 sources between $4$-$8$ M$_{\odot}$ and 32 sources above $8$ M$_{\odot}$. Accretion rates are inferred from H$α$ and H$β$ luminosities for 104 of the new Herbigs. These accretion rates, combined with previous similar estimates, allow us to analyze the accretion properties of Herbig stars using the largest sample ever considered. We provide further support to the existence of a break in accretion properties at $\sim3$-$4$ M$_{\odot}$, which was already reported for the previously known Herbig stars. We re-estimate the potential break in accretion properties to be at $3.87^{+0.38}_{-0.96}$ M$_{\odot}$. As observed for the previously known Herbig stars, the sample of new Herbig stars independently suggests intense inner-disk photoevaporation for sources with masses above $\sim7$ M$_{\odot}$. These observations provide robust observational support to the accuracy of the Vioque et al. (2020) catalogue of Herbig candidates.

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