论文标题

带有光盘的分层三重系统的积聚率

Accretion rates in hierarchical triple systems with discs

论文作者

Ceppi, Simone, Cuello, Nicolás, Lodato, Giuseppe, Clarke, Cathie, Toci, Claudia, Price, Daniel J.

论文摘要

年轻的多个系统在其一生的前几毫升中,在原始阶段和原球网阶段增添了最终质量。先前的研究表明,在二元系统中,大多数积聚的质量落在较轻的恒星上,从而发展为质量均衡。但是,年轻的恒星系统通常包含两颗以上的恒星,预计将采用分层配置。尽管具有天体物理相关性,但分层系统中的差分积聚仍有待理解。在这项工作中,我们调查了二进制中预期的积聚趋势是否有效对于高阶倍数。我们对嵌入在积聚盘中的二进制文件和层次三元组(HTS)进行了一组3D平滑的粒子流体动力学模拟,并带有代码幻影。与二进制文件相比,我们首次确定了HTS及其偏差的增值趋势。这些偏差由于小二元与圆周盘中的无数材料的相互作用,可以用半分析处方描述。通常,HT的较小二进制质量比与较小的二元质量的单星相比的质量高。我们发现,在HT中,如果小二进制比第三体重,则标准的差分积分方案(从而次要积聚更多的质量)会受到阻碍。相度地,如果小二进制比第三体轻,则可以增强标准的差分积聚方案。我们在HTS中发现的特殊差分积聚机制有望影响其质量比分布。

Young multiple systems accrete most of their final mass in the first few Myr of their lifetime, during the protostellar and protoplanetary phases. Previous studies showed that in binary systems the majority of the accreted mass falls onto the lighter star, thus evolving to mass equalisation. However, young stellar systems often comprise more than two stars, which are expected to be in hierarchical configurations. Despite its astrophysical relevance, differential accretion in hierarchical systems remains to be understood. In this work, we investigate whether the accretion trends expected in binaries are valid for higher order multiples. We performed a set of 3D Smoothed Particle Hydrodynamics simulations of binaries and of hierarchical triples (HTs) embedded in an accretion disc, with the code Phantom. We identify for the first time accretion trends in HTs and their deviations compared to binaries. These deviations, due to the interaction of the small binary with the infalling material from the circum-triple disc, can be described with a semi-analytical prescription. Generally, the smaller binary of a HT accretes more mass than a single star of the same mass as the smaller binary. We found that in a HT, if the small binary is heavier than the third body, the standard differential accretion scenario (whereby the secondary accretes more of the mass) is hampered. Reciprocally, if the small binary is lighter than the third body, the standard differential accretion scenario is enhanced. The peculiar differential accretion mechanism we find in HTs is expected to affect their mass ratio distribution.

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