论文标题
BQ ARI的第一光曲线解决方案和时期研究
The First Light Curve Solutions and Period Study of BQ Ari
论文作者
论文摘要
对W UMA型二元系统BQ ARI的BVR过滤器中的光度观察的首次分析。使用Wilson-Devinney(W-D)代码与Monte Carlo(MC)模拟进行光曲线分析,以确定其光度和几何元素及其不确定性。这些结果表明,BQ ARI是一个接触二进制系统,具有光度质量比q = 0.548 \ pm0.019,夹心因子F = 24 \ pm0.8%,轨道倾斜度为i = 85.09 \ pm0.45。我们使用Gaia EDR3的视差来计算二进制系统的绝对参数。这项研究提出了一个新的BQ ARI线性胚片,结合了我们的新复合时代和先前的观察结果,我们使用Monte Carlo Markov链(MCMC)方法进行了分析。我们通过使用遗传算法(GA)和OCFIT代码中的MCMC方法来分析O-C图,对系统的轨道周期行为进行了首次分析。我们试图通过两种方法来解释O-C图中线性拟合的残差的分析。 “ Lite +二次”和“磁性活性 +二次化”。尽管我们认为磁性可能是可能的,但应进一步研究系统,以揭示轨道周期变化的性质。
The first analysis of the photometric observation in BVR filters of a W UMa type binary system BQ Ari was performed. Light curve analysis was performed using Wilson-Devinney (W-D) code combined with a Monte Carlo (MC) simulation to determine its photometric and geometric elements and their uncertainties. These results show that BQ Ari is a contact binary system with a photometric mass ratio q=0.548\pm0.019, a fillout factor f=24\pm0.8 percent, and an orbital inclination of i=85.09\pm0.45. We used the parallax from Gaia EDR3 for calculating the absolute parameters of the binary system. This study suggested a new linear ephemeris for BQ Ari, combining our new mid-eclipse times and the previous observations, which we analyzed using the Monte Carlo Markov Chain (MCMC) method. We present the first analysis of the system's orbital period behavior by analyzing the O-C diagram using the Genetic Algorithm (GA) and the MCMC approaches in OCFit code. We attempted to explain the analysis of the residuals of linear fit in the O-C diagram with two approaches; "LiTE + Quadratic" and "Magnetic activity + Quadratic". Although we consider the magnetic activity to be probable, the system should be studied further in order to reveal the nature of orbital period variations.