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首页> 外文期刊>The Astrophysical journal >GLOBAL ANALYSIS OF MASS TRANSFER CYCLES IN CATACLYSMIC VARIABLES
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GLOBAL ANALYSIS OF MASS TRANSFER CYCLES IN CATACLYSMIC VARIABLES

机译:动力学变量中传质周期的整体分析

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We give a global analysis of mass transfer variations in cataclysmic variables. We show that limit cycles driven by variations of the secondary star's radius alone require this radius to be sensitive to the instantaneous mass transfer rate. The only promising mechanism for this is irradiation of the secondary by the accreting primary. Explicit modeling of this process shows, however, that cycles do not occur for secondary masses approx< 0.65 solar mass. For such masses, the thermal inertia of the convective envelope is so large that irradiation cannot expand it relative to the Roche lobe, and the system finds a stable mass transfer rate. In contrast, large-amplitude limit cycles occur for all secondary masses if the angular momentum losses from the binary are assumed to increase rather modestly with the mass transfer rate simultaneously with the radius variations.
机译:我们对催化变量的传质变化进行了全局分析。我们表明,仅由次级恒星半径变化驱动的极限环就要求该半径对瞬时传质速率敏感。唯一有前途的机制是通过增生的原核对次级进行照射。但是,此过程的显式建模表明,对于质量约小于0.65的次级质量,不会发生循环。对于这样的质量,对流包膜的热惯性是如此之大,以至于辐射无法使其相对于罗氏波瓣膨胀,并且系统找到了稳定的传质速率。相反,如果假定来自二进制的角动量损失随着传质速率和半径变化同时适度增加,则所有次级质量都会发生大振幅极限循环。

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