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Mass Transfer in Binary Stellar Evolution and Its Stability

机译:二元恒星演化中的传质及其稳定性

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The evolution of a binary star system by various analytical and numerical approximations of mass transfer rate normalized to the equilibrium rate and its stability conditions are investigated. We present results from investigations of mass transfer and stability in close binary star systems using the different orbital parameters. The stability and instability of mass transfer in binary star evolution depends on the exchange of material which the response of the binary to the initial Roche lobe overflow causes the donor to loose even more material. Our work is mainly focused on basic mathematical derivations, analytical and numerical solutions in order to explain the mass transfer system in different orbital parameters as well as the results are compared with previous studies in both cases. Mass transfer is usually stable, as long as the winds specific angular momentum does not exceed the angular momentum per reduced mass of the system. This holds for both dynamical and thermal time scales. Those systems which are not stable will usually transfer mass on the thermal time scale. The variation of Roche lobe radius with mass ratio in the binary, for various orbital parameters in the conservative and non-conservative mass transfer, as well as the evolution equations, orbital angular momentum of the binary system and the corresponding analytical and numerical solutions for different cases, under certain restrictive approximations is derived, simulated and discussed.
机译:研究了通过将质量传递速率归一化到平衡速率及其稳定性条件的各种解析和数值近似,对双星系统的演化。我们提出了使用不同的轨道参数在密闭双星系统中进行传质和稳定性研究的结果。双星演化过程中传质的稳定性和不稳定性取决于物质的交换,双物质对初始罗氏叶溢流的响应会导致施主失去更多的物质。我们的工作主要集中在基本数学推导,解析和数值解上,以解释在不同轨道参数下的传质系统,并将结果与​​这两种情况下的先前研究进行比较。只要风的特定角动量不超过系统每减小的质量的角动量,质量传递通常就会稳定。这适用于动态和热时标。那些不稳定的系统通常会在热时间尺度上传递质量。对于保守和非保守传质中的各种轨道参数,罗氏瓣半径随二​​元质量比的变化,以及二元系统的演化方程,轨道角动量以及相应的解析和数值解在某些限制性近似下,可以推导,模拟和讨论这种情况。

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