论文标题

白矮人二进制途径调查VII:传质后系统双模式分布的证据?

The White Dwarf Binary Pathways Survey VII: Evidence for a bi-modal distribution of post mass transfer systems?

论文作者

Lagos, F., Schreiber, M. R., Parsons, S. G., Toloza, O., Gänsicke, B. T., Hernandez, M. S., Schmidtobreick, L., Belloni, D.

论文摘要

通常认为,二进制系统由白色矮人和主要序列伴侣组成,其轨道周期最高约100美元,通常被认为是通过共同的信封进化形成的,但仍然知之甚少。为了在这些物体形成的物理过程中提供新的观察性约束,我们正在对由白矮人和a t​​o k-type伴侣组成的近亲进行大规模调查。在这里,我们介绍了三个具有偏心轨道和轨道时期的系统,我们的调查发现了约10-42美元的$ d。基于HST光谱和用球质质的高角度分辨率图像,我们发现其中两个系统很可能是三个系统,而其余的系统可能是二进制或分层三重系统,但没有一个是公共封装后的二进制二进制二进制二进制(PCEB)。这些系统的发现表明,我们的调查能够检测到数周的轨道周期的系统,但是我们以前发现的所有六个PCEB的周期都低于2.5 d。我们建议,我们认同几周阶时的所有系统都不是PCEB的所有系统表明,两种导致非常接近($ \ lyssim 10 $ d)的不同机制和较宽的WIDE+AFGK二进制文件之间的过渡:共同的包膜进化和非传递稳定的稳定质量转移。

Binary systems consisting of a white dwarf and a main-sequence companion with orbital periods up to $\approx 100$ d are often thought to be formed through common envelope evolution which is still poorly understood. To provide new observational constraints on the physical processes involved in the formation of these objects, we are conducting a large-scale survey of close binaries consisting of a white dwarf and an A to K-type companion. Here we present three systems with eccentric orbits and orbital periods between $\approx10-42$ d discovered by our survey. Based on HST spectroscopy and high angular resolution images obtained with SPHERE-IRDIS, we find that two of these systems are most likely triple systems while the remaining one could be either a binary or a hierarchical triple but none of them is a post common envelope binary (PCEB). The discovery of these systems shows that our survey is capable to detect systems with orbital periods of the order of weeks, but all six PCEBs we have previously discovered have periods below 2.5 d. We suggest that the fact that all of the systems we identify with periods of the order of weeks are not PCEBs indicates a transition between two different mechanisms responsible for the formation of very close ($\lesssim 10$ d) and somewhat wider WD+AFGK binaries: common envelope evolution and non-conservative stable mass transfer.

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