论文标题

Herbig AE/BE星星的积聚率和机制

The accretion rates and mechanisms of Herbig Ae/Be stars

论文作者

Wichittanakom, C., Oudmaijer, R. D., Fairlamb, J. R., Mendigutía, I., Vioque, M., Ababakr, K. M.

论文摘要

这项工作提出了163个Herbig AE/BE明星的光谱研究。其中,我们提供了30个对象的新数据。恒星参数(例如温度,红色,质量,发光度和年龄)均匀确定。质量积聚率是根据$ \ rmHα$排放线测量结果确定的。我们的数据与先前研究的X射手样本相辅相成,我们使用GAIA DR2可视性更新结果,总共提供了78个具有同质确定的恒星参数和质量吸积率的对象。此外,确定了另外85个Haebes的质量积聚率。我们证实了先前的发现,质量积聚率分别与恒星质量的函数增加,并且分别存在下和较高质量恒星的不同斜率。斜率更改的质量确定为$ 3.98^{+1.37} _ { - 0.94} \,\ rm m _ {\ odot} $。我们在低质量恒星和高质量恒星的不同磁盘积聚模式的背景下讨论了这一突破。由于它们与T Tauri恒星的相似性,我们确定了用磁层积聚的晚期型Herbig星的增生机制。早期型恒星的可能性仍然开放,我们建议边界层积聚模型可能是可行的替代方法。最后,我们研究了质量积聚 - 年龄关系。即使使用基于GAIA的高级数据,也很难选择足够大的子样本来消除这种关系中的质量依赖性。然而,似乎质量积聚的确会按照基本理论考虑的预期随着年龄的增长而下降。

This work presents a spectroscopic study of 163 Herbig Ae/Be stars. Amongst these, we present new data for 30 objects. Stellar parameters such as temperature, reddening, mass, luminosity and age are homogeneously determined. Mass accretion rates are determined from $\rm Hα$ emission line measurements. Our data is complemented with the X-Shooter sample from previous studies and we update results using Gaia DR2 parallaxes giving a total of 78 objects with homogeneously determined stellar parameters and mass accretion rates. In addition, mass accretion rates of an additional 85 HAeBes are determined. We confirm previous findings that the mass accretion rate increases as a function of stellar mass, and the existence of a different slope for lower and higher mass stars respectively. The mass where the slope changes is determined to be $3.98^{+1.37}_{-0.94}\,\rm M_{\odot}$. We discuss this break in the context of different modes of disk accretion for low- and high mass stars. Because of their similarities with T Tauri stars, we identify the accretion mechanism for the late-type Herbig stars with the Magnetospheric Accretion. The possibilities for the earlier-type stars are still open, we suggest the Boundary Layer accretion model may be a viable alternative. Finally, we investigated the mass accretion - age relationship. Even using the superior Gaia based data, it proved hard to select a large enough sub-sample to remove the mass dependency in this relationship. Yet, it would appear that the mass accretion does decline with age as expected from basic theoretical considerations.

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