论文标题

恒星多样性会影响原始圆盘质量与增生率之间的相关性:二进制文件解释了上部SCO中的高核酸

Stellar multiplicity affects the correlation between proto-planetary disc masses and accretion rates: binaries explain high-accretors in Upper Sco

论文作者

Zagaria, Francesco, Clarke, Cathie J., Rosotti, Giovanni P., Manara, Carlo F.

论文摘要

近年来,在附近的年轻恒星形成区域中检测到了新生恒星的质量积聚率与新生星圆盘质量之间的相关性。尽管这种相关性可以解释为椎间盘中的粘性扩散过程,但在更演变的区域中,圆盘质量较低的高度处理来源仍然令人困惑。在本文中,我们假设存在截断光盘的恒星伴侣的存在可以解释这些异常值。首先,我们搜索了文献以获取有关狼疮,chamaeleon〜I和Upper Sco的恒星多重性的信息,发现与相关性相关的碟片中约有20%是在二进制或高阶多重恒星系统中。我们证明,在任何圆盘上,这些来源在系统上具有比单明星中的积分率更高的统计学意义,而大部分二元人口则被聚集在$ m_ \ mathrm {disc}/\ dot {m} _ \ dot {m} _ \ dot {m} _ \ mathrm {acc} acc} {acc} \ act \ act count0.1 \ actionrm mathrm mathrm} $ {myrm} $ {myrm} $ {myrm} $ {myrm} $}然后,我们运行潮汐截断盘的气体和尘埃一维进化模型,以与数据进行比较。我们发现,即使每种二元的未知偏心率通过对象比较阻止对象,这些模型能够很好地重现狼疮和上部SCO中观察到的椎间盘的大多数人群。在后一个区域,如果差异较低的二进制碟片可能会降低谷物凝血效率,则该协议会提高。最后,我们提到的是,热风和亚结构对于解释很少的外围来源可能很重要。

In recent years a correlation between mass accretion rates onto new-born stars and their proto-planetary disc masses was detected in nearby young star-forming regions. Although such a correlation can be interpreted as due to viscous-diffusion processes in the disc, highly-accreting sources with low disc masses in more evolved regions remain puzzling. In this paper, we hypothesise that the presence of a stellar companion truncating the disc can explain these outliers. Firstly, we searched the literature for information on stellar multiplicity in Lupus, Chamaeleon~I and Upper Sco, finding that roughly 20 per cent of the discs involved in the correlation are in binaries or higher-order multiple stellar systems. We prove with high statistical significance that at any disc mass these sources have systematically higher accretion rates than those in single-stars, with the bulk of the binary population being clustered around $M_\mathrm{disc}/\dot{M}_\mathrm{acc}\approx0.1\,\mathrm{Myr}$. We then run coupled gas and dust one-dimensional evolutionary models of tidally truncated discs to be compared with the data. We find that these models are able to reproduce well most of the population of observed discs in Lupus and Upper Sco, even though the unknown eccentricity of each binary prevents an object by object comparison. In the latter region, the agreement improves if the grain coagulation efficiency is reduced, as may be expected in discs around close binaries. Finally, we mention that thermal winds and sub-structures can be important in explaining few outlying sources.

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