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Understanding Mass Transfer in Wind-Interacting Binaries:SPH Models of 'Wind Roche-lobe Overflow'

机译:了解风交互二进制二进制文件的大规模转移:“风罗氏-叶片溢流”的SPH模型

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We investigate mass transfer in wind-interacting binaries consisting of a mass-losing, Mira variable and an accreting, compact companion. Mass transfer in such systems is generally assumed to occur via Bondi-Hoyle-Littleton (BHL) accretion. However, the accretion rates and outflow geometries that result from this mass-transfer mechanism do not adequately explain the observations of the nearest and best studied symbiotic binary, Mira, or, for example, the formation of chemically polluted stars, e.g. barium stars. We propose a new mass-transfer mode, "wind Roche-Lobe Overflow (wind RLOF)", which we investigate with numerical hydrodynamic simulations. This mode occurs when the wind acceleration zone lies close to, or is a significant fraction of, the Roche-lobe radius. We show that the circumstellar outflows which result from wind RLOF tend to be highly aspherical and strongly focused towards the binary orbital plane. The subsequent mass-transfer rates are at least an order of magnitude greater than the analogous BHL values. We discuss the implications of these results for symbiotic binaries and other related systems, e.g. bipolar (proto)-planetary nebulae, supernovae la and Wolf-Rayet binaries.
机译:我们调查风交互式二进制二进制文件的大规模转移,包括大规模丢失,米拉变量和压缩伴侣。通常假设在这种系统中的传质通过Bondi-Hoyle-Littleton(BHL)增生。然而,由该传质机制产生的增率和流出几何形状不会充分解释最近和最佳研究的共生二进制,Mira或例如化学污染的恒星的形成观察,例如,形成化学污染的恒星。钡星。我们提出了一种新的大规模转移模式,“风罗氏 - 叶片溢出(风RLOF)”,我们用数值流体动力模拟进行调查。当风速区域靠近或是罗氏叶半径的显着分数时,发生这种模式。我们表明,由风RLOF产生的周围的流出往往是高度球面的并且强烈地聚焦到二元轨道平面。随后的质量传递速率至少比类似的BHL值大的数量级。我们讨论了这些结果对共生二进制文件和其他相关系统的影响,例如, Bipolar(ProLo)-Planetary星云,Supernovae La和Wolf-Rayet二进制文件。

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