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A Double Wave in the Orbital-period Variations of the Eclipsing Binary RT Per

机译:轨道周期的轨道周期变化的双波,每次

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Orbital-period variations of the low-mass, semi-detached eclipsing binary RT Per are analyzed. In addition to the secular variation of the orbital period determined by the mass transfer between the components, cyclic variations are also present. Both the light-time effect and magnetic oscillations can describe the cyclic orbital-period variations of RT Per. The secular period increase can be explained by a uniform flow of matter from the lower-mass to the higher-mass component at a rate of 0.60 x 10(-8)M-/year, with the total angular momentum being conserved. The period variations can be represented equally accurately by either a superposition of two cyclic variations or a superposition of a secular period increase and two cyclic variations. Approximately the same parameters are derived for the lower-period (36.8 year) variations when the times of minima are fitted with a linear or a quadratic formula. For the longer-period variation, a period of 275 years and amplitude of 0.104 days are found using the linear formula, or 89 years and 0.045 days using the quadratic formula.
机译:分析了低质量的轨道周期变化,半分离的ECLIPSIPENT NINARICET NINARD RT每单位。除了由组分之间的传质确定的轨道周期的异常周期之外,还存在循环变化。光时间效果和磁振荡都可以描述RT / RT的循环轨道周期变化。世俗期间增加可以通过从低质量到高质量组分的均匀物质流动以0.60×10(-8)/年的速度来解释,并且节省总角度动量。通过两个循环变化的叠加或世俗时期增加和两个循环变化的叠加来同样准确地表示周期变型。当最小值的时间装配有线性或二次公式时,导出大致相同的参数(36.8年)变化。对于长期变化,使用直线配方或89岁和0.045天使用二次配方,发现275岁的时间和0.104天的幅度。

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