...
首页> 外文期刊>The Astrophysical journal >THE FIRST COMPREHENSIVE PHOTOMETRIC STUDY OF THE ALGOL-TYPE SYSTEM CL AURIGAE
【24h】

THE FIRST COMPREHENSIVE PHOTOMETRIC STUDY OF THE ALGOL-TYPE SYSTEM CL AURIGAE

机译:ALGOL型体系CL Aurigae的首次综合光度研究

获取原文
   

获取外文期刊封面封底 >>

       

摘要

We present the first extensive photometric results of CL Aur from our BVRI CCD photometry made on 22 nights from 2003 November to 2005 February. Fifteen new timings of minimum light were obtained. During the past 104?yr, the orbital period has varied due to a periodic oscillation superposed on a continuous period increase. The period and semi-amplitude of the oscillation are about 21.6?yr and 0.0133 day, respectively. This detail is interpreted as a light-travel-time effect due to a low-luminosity K-type star gravitationally bound to the CL Aur close system. Our photometric study indicates that CL Aur is a relatively short-period Algol-type binary with values of q = 0.602 and i = 882. Mass transfer from the secondary to the primary eclipsing component is at least partly responsible for the observed secular period change with a rate of dP/dt = +1.4 × 10–7 days?yr–1. A cool spot model has been calculated but we think that an alternative hot-spot model resulting from a gas stream impact on the hot star is more reasonable despite two difficulties with the explanation. Absolute dimensions of the eclipsing system are deduced and its present state is compared with tracks for single star and conservative close binary evolution. Finally, we examine the possible reconciliation of two different calculations of the luminosity of the hot spot and a re-interpretation of the secular term of the period variability.
机译:我们从2003年11月至2005年2月的22个晚上进行的BVRI CCD光度测定,首次提出了CL Aur的广泛光度测定结果。获得了15个最小光的新定时。在过去的104年中,轨道周期由于叠加在连续周期增加上的周期性振荡而发生了变化。振荡的周期和半振幅分别约为21.6μyr和0.0133天。由于低光度K型恒星在重力作用下与CL Aur密闭系统结合,因此该细节被解释为光旅行时间效应。我们的光度学研究表明,CL Aur是一个相对短周期的Algol型二元化合物,其q = 0.602和i =882。从次蚀分量到主蚀分量的质量传递至少部分负责观察到的长期周期变化。 dP / dt的比率= +1.4×10-7天?yr-1。尽管已经计算出了一个凉点模型,但是我们认为,尽管存在两个解释上的困难,但是由气流对热星的影响而产生的另一种热点模型更为合理。推导了日食系统的绝对尺寸,并将其当前状态与单星轨道和保守的接近双星演化的轨道进行了比较。最后,我们研究了热点光度的两种不同计算的可能对帐,以及对周期变化的长期项的重新解释。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号