论文标题

狼蛛大规模二进制监测VI:51个单衬O型二进制文件中隐藏伴侣的表征

The Tarantula Massive Binary Monitoring VI: Characterisation of hidden companions in 51 single-lined O-type binaries, a flat mass-ratio distribution, and black-hole binary candidates

论文作者

Shenar, Tomer, Sana, Hugues, Mahy, Laurent, Apellaniz, Jesus Maiz, Crowther, Paul A., Gromadzki, Mariusz, Herrero, Artemio, Langer, Norbert, Marchant, Pablo, Schneider, Fabian R. N., Sen, Koushik, Soszynski, Igor, Toonen, S.

论文摘要

我们旨在寻找拥有黑洞伴侣(OB+BH)的大型二进制文件,并在大麦芽岩(LMC)的属极金属度环境下建立大型恒星的出生质量比率分布。我们使用移位和添加的网格解开技术来表征51个SB1 O型中的隐藏伴侣,并在Tarantula Massive Binary Monitoring(TMBM)的框架中监测的LMC中进化的B型二进制文件。 在51个SB1系统中,发现有43个(84%)具有非脱位恒星伴侣,其中28个是自信的检测,而15个则不确定(SB1:或SB2 :)。在这43个目标中,发现一个目标是三倍(VFTS 64),发现两个是四倍体(VFTS 120,702)。其余八个目标(16%)保留了SB1分类。除了在单独的论文中详细分析的VFTS 243的明确情况外,我们还标识了两个其他OB+BH候选者:VFTS 514和VFTS 779。样本中可能存在其他黑洞,但可能性较低。我们的研究牢固地建立了在LMC金属性上的O型恒星几乎平坦的出生质量比率分布,覆盖了整个质量比率范围(0.05 <q <1),并且周期为0 <log p <3 [d]。 OB+BH候选者的性质应通过将来的监测来验证,但是OB+BH候选者的频率通常与LMC金属性最新预测一致。

We aim to hunt for massive binaries hosting a black hole companion (OB+BH) and establish the natal mass-ratio distribution of massive stars at the subsolar metallicity environment of the Large Magellanic Cloud (LMC). We use the shift-and-add grid disentangling technique to characterize the hidden companions in 51 SB1 O-type and evolved B-type binaries in the LMC monitored in the framework of the Tarantula Massive Binary Monitoring (TMBM). Out of the 51 SB1 systems, 43 (84%) are found to have non-degenerate stellar companions, of which 28 are confident detections, and 15 are less certain (SB1: or SB2:). Of these 43 targets, one is found to be a triple (VFTS 64), and two are found to be quadruples (VFTS 120, 702). The remaining eight targets (16%) retain an SB1 classification. Aside from the unambiguous case of VFTS 243, analysed in detailed in a separate paper, we identify two additional OB+BH candidates: VFTS 514 and VFTS 779. Additional black holes may be present in the sample but at a lower probability. Our study firmly establishes a virtually flat natal mass-ratio distribution for O-type stars at LMC metallicity, covering the entire mass-ratio range (0.05 < q < 1) and periods in the range 0 < log P < 3 [d]. The nature of the OB+BH candidates should be verified through future monitoring, but the frequency of OB+BH candidates is generally in line with recent predictions at LMC metallicity.

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