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Eclipsing Binary Systems as Tests of Low-Mass Stellar Evolution Theory

机译:作为低质量恒星演化理论的蚀地二元系统

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Stellar fundamental properties -- masses, radii, effective temperatures --can be extracted from observations of eclipsing binary systems with remarkable precision, often better than 2%. Such precise measurements afford us the opportunity to confront the validity of basic predictions of stellar evolution theory, such as the mass-radius relationship. A brief historical overview of confrontations between stellar models and data from eclipsing binaries is given, highlighting key results and physical insight that have led directly to our present understanding. The current paradigm that standard stellar evolution theory is insufficient to describe the most basic relation, that of a star's mass to its radius, along the main sequence is then described. Departures of theoretical expectations from empirical data, however, provide a rich opportunity to explore various physical solutions, improving our understanding of important stellar astrophysical processes.
机译:恒星基本性质 - 群众,半径,有效温度 - 可从黯淡二元系统的观测中提取,具有显着的精度,通常优于2%。此类精确测量为我们提供了面对恒星演化理论的基本预测的有效性的机会,例如质量半径关系。给出了恒星模型与来自日食二进制文件的数据之间对抗的简要概述,突出了直接导致我们现在的理解的关键结果和身体洞察力。然后描述了标准恒星演化理论的目前的范式来描述最基本的关系,然后描述了沿着主序列的明星质量的基本关系。然而,从经验数据的理论期望离开提供了丰富的机会,可以探索各种物理解决方案,从而提高我们对重要恒星天体物理过程的理解。

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