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The light and period variations of the eclipsing binary BX Draconis

机译:黯淡的二进制BX Draconis的光和周期变化

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New CCD photometric observations of BX Dra were carried out on 26 nights during the period from 2009 April to 2010 June. The long-term photometric behaviors of the system are obtained from detailed studies of the period and light variations, based on historical data and our new observations. All available light curves display total eclipses at secondary minima and inverse O'Connell effects with Max I fainter than Max II, which were satisfactorily modeled by adding a slightly time-varying hot spot on the primary star. A total of 87 times of minimum lights spanning over ~74 yr, including our 22 timing measurements, were used for ephemeris computations. A detailed analysis of the O - C diagram disclosed that the orbital period shows an upward parabola in combination with a sinusoidal variation. The continuous increase of period at a rate of +5.65 × 10~(-7) dyr~(-1) is consistent with that calculated from the Wilson-Devinney synthesis code. It can be interpreted as a mass transfer from the secondary star to the primary at a rate of 2.74 × 10~(-7)M~⊙ yr~(-1), which is one of the largest rates between components of the contact system. The most likely explanation of the sinusoidal variation having a period of 30.2 yr and a semiamplitude of 0.0062 d is a light-travel-time effect due to the existence of a circumbinary object. We suggest that BX Dra is probably a triple system, consisting of a primary star with a spectral type of F0, its secondary component of spectral type F1-2, and an unseen circumbinary object with a minimum mass of M_3 = 0.23 M~⊙.
机译:在2009年4月至2010年6月的26个晚上,对BX Dra进行了新的CCD光度观察。该系统的长期光度行为是根据历史数据和我们的新观察结果,通过对周期和光变化的详细研究获得的。所有可用的光曲线都显示了次极小处的全食和最大I弱于最大II的O'Connell逆效应,这可以通过在初级恒星上添加一个随时间变化的热点来令人满意地建模。星历计算使用了总共​​87次跨越约74年的最小光线,包括我们的22个计时测量值。对OC图的详细分析显示,轨道周期显示出抛物线向上与正弦变化相结合。周期以+5.65×10〜(-7)dyr〜(-1)的速率连续增加,这与根据Wilson-Devinney综合码计算出的周期一致。它可以解释为以2.74×10〜(-7)M〜⊙yr〜(-1)的速率从次级恒星到初级恒星的质量转移,这是接触系统各组成部分之间最大的速率之一。周期为30.2 yr,半振幅为0.0062 d的正弦变化的最可能解释是由于存在环绕物体而产生的光程时间效应。我们认为,BX Dra可能是一个三重系统,由光谱类型为F0的原恒星,光谱类型为F1-2的次级成分和最小质量为M_3 = 0.23 M〜⊙的看不见的环绕天体组成。

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