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首页> 外文期刊>The Astrophysical journal >THE ARAUCARIA PROJECT. OGLE-LMC-CEP-1718: AN EXOTIC ECLIPSING BINARY SYSTEM COMPOSED OF TWO CLASSICAL OVERTONE CEPHEIDS IN A 413 DAY ORBIT*
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THE ARAUCARIA PROJECT. OGLE-LMC-CEP-1718: AN EXOTIC ECLIPSING BINARY SYSTEM COMPOSED OF TWO CLASSICAL OVERTONE CEPHEIDS IN A 413 DAY ORBIT*

机译:阿劳卡里亚项目。 OGLE-LMC-CEP-1718:在413天的轨道上由两个经典泛音球组成的外向食宿二元系统*

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摘要

We have obtained extensive high-quality spectroscopic observations of the OGLE-LMC-CEP-1718 eclipsing binary system in the Large Magellanic Cloud that Soszyński et al. had identified as a candidate system for containing two classical Cepheids in orbit. Our spectroscopic data clearly demonstrate binary motion of the Cepheids in a 413?day eccentric orbit, rendering this eclipsing binary system the first ever known to consist of 2 classical Cepheid variables. After disentangling the four different radial velocity variations in the system, we present the orbital solution and the individual pulsational radial velocity curves of the Cepheids. We show that both Cepheids are extremely likely to be first overtone pulsators and determine their respective dynamical masses, which turn out to be equal to within 1.5%. Since the secondary eclipse is not observed in the orbital light curve, we cannot derive the individual radii of the Cepheids, but the sum of their radii derived from the photometry is consistent with overtone pulsation for both variables. The existence of two equal-mass Cepheids in a binary system having different pulsation periods (1.96 and 2.48?days, respectively) may pose an interesting challenge to stellar evolution and pulsation theories, and a more detailed study of this system using additional data sets should yield deeper insight about the physics of stellar evolution of Cepheid variables. Future analysis of the system using additional near-infrared photometry might also lead to a better understanding of the systematic uncertainties in current Baade-Wesselink techniques of distance determinations to Cepheid variables.
机译:我们已经获得了Soszyński等人的大麦哲伦星云中OGLE-LMC-CEP-1718蚀食二元系统的大量高质量光谱观察结果。已确定为包含两个经典造父变星在轨的候选系统。我们的光谱数据清楚地显示了造父变星在413天偏心轨道上的二元运动,这使该蚀双星系统成为有史以来第一个由2个经典造父变星变量组成的系统。解开系统中四个不同的径向速度变化之后,我们给出了造父变星的轨道解和各个脉动径向速度曲线。我们表明,两个造父变星极有可能是第一个泛音脉动波,并确定了它们各自的动力学质量,结果等于1.5%以内。由于在轨道光曲线中未观察到次蚀,因此我们无法得出造父变星的单个半径,但是从测光法得出的它们的半径之和与两个变量的泛音脉动一致。在具有不同脉动周期(分别为1.96天和2.48天)的二元系统中,存在两个等质量造父变星可能对恒星演化和脉动理论提出了有趣的挑战,应使用更多数据集对该系统进行更详细的研究对造父变星恒星演化的物理学有更深入的了解。使用额外的近红外光度法对该系统进行的未来分析也可能会导致人们更好地理解当前Baade-Wesselink技术对造父变星的距离确定中的系统不确定性。
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