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BINARITY AND PULSATION IN ALGOL-TYPE BINARY SYSTEM SX DRACONIS

机译:ALGOL型二元系统SX DRACONIS中的二元性和脉冲化

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Photometric observations of SX Dra were carried out to determine the properties of the components and pulsational characteristics of the more massive pulsational component. Physical parameters of the component stars were obtained by modeling B and V light curves using the Wilson-Devinney code. Results indicate that SX Dra is a semi-detached system with the secondary component filling its Roche lobe. The O–C data showed parabolic and sinusoidal variation. Cyclic variation in the O–C diagram could be the result of the possible magnetic activity of the secondary component instead of the third body. The secular increase in the orbital period of the system can be interpreted as being the result of mass transfer from the secondary component to the primary one at a rate of 2.1 × 10–7 M ☉ yr–1. Results of a time-series analysis performed after removing binary effects indicated that the hot component shows δ Scuti light variations with pulsational periods of 63 and 73 minutes. Spherical harmonic degrees (l) were determined to be 3 for the first frequency and 1-2 for the second frequency.
机译:进行了SX Dra的光度观察,以确定了组件的特性以及更大质量的脉动组件的脉动特性。组成恒星的物理参数是通过使用Wilson-Devinney码对B和V光曲线建模来获得的。结果表明,SX Dra是一个半独立式系统,其次要成分充满了其罗氏瓣。 OC数据显示出抛物线形和正弦形变化。 OC图中的周期性变化可能是次要成分而不是第三个主体可能发生磁活动的结果。该系统轨道周期​​的长期增加可以解释为以2.1×10–7 M☉yr–1的速度从次要成分向主要成分转移的结果。去除二元效应后进行的时间序列分析结果表明,热分量显示δScuti光变化,脉动周期为63和73分钟。球谐度(l)对于第一频率确定为3,对于第二频率确定为1-2。

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