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INTERACTING BINARIES WITH ECCENTRIC ORBITS: SECULAR ORBITAL EVOLUTION DUE TO CONSERVATIVE MASS TRANSFER

机译:与偏心轨道相互作用的双星:由于保守的质量转移而导致的轨道轨道演化

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摘要

We investigate the secular evolution of the orbital semimajor axis and eccentricity due to mass transfer in eccentric binaries, assuming conservation of total system mass and orbital angular momentum. Assuming a delta function mass transfer rate centered at periastron, we find rates of secular change of the orbital semimajor axis and eccentricity which are linearly proportional to the magnitude of the mass transfer rate at periastron. The rates can be positive as well as negative, so that the semimajor axis and eccentricity can increase as well as decrease in time. Adopting a delta function mass-transfer rate of 10~(-9) M_☉ yr~(-1) at periastron yields orbital evolution timescales ranging from a few Myr to a Hubble time or more, depending on the binary mass ratio and orbital eccentricity. Comparison with orbital evolution timescales due to dissipative tides furthermore shows that tides cannot, in all cases, circularize the orbit rapidly enough to justify the often-adopted assumption of instantaneous circularization at the onset of mass transfer. The formalism presented can be incorporated in binary evolution and population synthesis codes to create a self-consistent treatment of mass transfer in eccentric binaries.
机译:我们假设总系统质量和轨道角动量的守恒,研究了由于偏心二元质量传递而引起的轨道半长轴和离心率的长期演变。假设以三角函数为中心的三角洲函数传质速率,我们发现轨道半长轴和偏心率的长期变化率与蠕变时传质速率的大小成线性比例关系。比率可以为正也可以为负,因此半长轴和偏心率可以增加也可以随着时间减少。在星体周围采用10〜(-9)M_☉yr〜(-1)的三角函数传质速率会产生从几Myr到Hubble时间或更长时间的轨道演化时标,具体取决于二元质量比和轨道偏心率。与耗散潮汐引起的轨道演化时间尺度的比较还表明,潮汐在所有情况下都不能足够快地使轨道环化,以证明传质开始时经常采用的瞬时环化假设是合理的。可以将所提供的形式主义并入二进制演化和种群合成代码中,以在偏心二进制中创建质量传递的自洽处理。

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