论文标题
$β$ lyrae型二进制ogle-blg-ecl-157529中的长光度循环和磁盘的演变
Long photometric cycle and disk evolution in the $β$ Lyrae type binary OGLE-BLG-ECL-157529
论文作者
论文摘要
热algol半度假的二进制组的亚型称为双周期变量(DPV)的特征是光度循环的时间比轨道循环长,其性质与控制质量传递速率的供体组件中的磁力发电机相关。我们的目的是了解与长周期相关的OGLE-BLG-ECL-157529的光曲线中观察到的形态变化。特别是,我们要解释一级和次要日食的相对深度的变化。我们分析了$ i $和$ v $ -band Ogle光度测定时间系列,跨度为18。5年,并建模轨道光曲线。我们发现Ogle-blg-ecl-157529是轨道周期24 \ fd8的新的黯然失色的银河系DPV,其长周期长度在基线期间的幅度和长度下降。我们表明,考虑到最热的恒星组件围绕厚度和半径变化,可以重现轨道光曲线的变化。我们的模型表明在长周期内以及在亮点位置的热点和亮点的温度变化。这与磁盘半径的变化可能表明该系统中的质量转移变化。
The subtype of hot algol semidetached binaries dubbed Double Periodic Variables (DPVs) are characterized by a photometric cycle longer than the orbital one, whose nature has been related to a magnetic dynamo in the donor component controlling the mass transfer rate. We aim to understand the morphologic changes observed in the light curve of OGLE-BLG-ECL-157529 that are linked to the long cycle. In particular, we want to explain the changes in relative depth of primary and secondary eclipses. We analyze $I$ and $V$-band OGLE photometric times series spanning 18.5 years and model the orbital light curve. We find that OGLE-BLG-ECL-157529 is a new eclipsing Galactic DPV of orbital period 24\fd8, and that its long cycle length decreases in amplitude and length during the time baseline. We show that the changes of the orbital light curve can be reproduced considering an accretion disk of variable thickness and radius, surrounding the hottest stellar component. Our models indicate changes in the temperatures of hot spot and bright spot during the long cycle, and also in the position of the bright spot. This, along with the changes in disk radius might indicate a variable mass transfer in this system.