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Photometric studies of the short-period eclipsing binary V1094 Her and MT Cas

机译:短周期蚀二元v1094的光度研究她和MT CAS

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We obtained three new full BVRI light curves for two eclipsing binaries V1094 Her and MTCas on nine nights from 2015 to 2018 using two optical telescopes.We analysed the orbital period variations using all available light curve minima, seven of which were from our work. For V1094 Her, we found that there is a cyclic variation overlaying a continuous period decrease. The cyclic variation of V1094 Her may be caused by the light-time effect by a third body of $P_3= 13:2(pm 1:2)$ yr or magnetic activity cycle with $T=15:1(pm 0:8)$ yr. The decreasing period of V1094 Her can be explained by either mass exchange $dot{M }_2 =-2:20imes 10^{-7}$ $M_{odot}$/yr for a third body or $dot{M}_2=-2.03imes 10^{-7}$ $M_{odot}$/yr for magnetic activity cycle. We confirmed there exist a period increase for MT Cas. For MT Cas, the secular decrease of period can be explained by the mass exchange $M_1=-1:09 imes 10^8$ $M_{odot}$/yr (including angular momentum loss of $dot{M}= 5:99imes10^{11}$ $M_{odot}$/yr). We obtained the orbital parameters for V1094 Her using the Wilson & Devinney program for the first time. For MT Cas, we updated their orbital parameters, which are similar to the results from previous work. We concluded that V1094 Her and MT Cas are contact eclipsing binaries with low contact factors and period variations.
机译:我们在2015年至2018年,我们在2015年至2018年的九个夜晚获得了三个新的全BVRI光曲线,2015年夜晚使用了两种光学望远镜。我们分析了使用所有可用光线最小值的轨道周期变化,其中七个来自我们的工作。对于v1094,我们发现,存在循环变化,其覆盖连续期限减少。 v1094的循环变化可能是由$ p_3 = 13:2( PM 1:2)$或磁活动周期的光时间效应引起的,以$ t = 15:1( PM 0 :8)$ YR。 V1094的减少时段可以通过质量交换$ dot {m} _2 = -2:20 times 10 ^ { - 7} $ m _ { oad} $ / yr为第三个机构或$ 点{m} _2 = -2.03 times 10 ^ { - 7} $ m _ { oad} $ / yr用于磁活动周期。我们确认了MT CAS的期间增加。对于MT CAS,可以通过大规模交换$ M_1 = -1:09 times 10 ^ $ $ m _ { oad} $ / yr(包括$ dot {m}的角色丢失来解释= 5:99 times10 ^ {11} $ m _ { odot} $ / yr)。我们首次使用Wilson&Devinney计划获得了V1094的轨道参数。对于MT CAS,我们更新了他们的轨道参数,类似于以前工作的结果。我们得出结论,v1094她和MT CAS是接触蚀的蒙皮二进制文件,具有低接触因子和周期变化。

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