Modelling Pulsating Stars

Philip Masding, Robin Leadbeater
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Abstract

Pulsating stars have been studied using non-linear hydrodynamic codes since the pioneering work of Robert Christy in the 1960s. Modern codes include improvements such as allowing for convection but there is a penalty in terms of computation speed and for some stars convection is not significant. In this work a new version of the Christy program has been developed which can run hundreds of star models to convergence in a day or two of computer time. This allows overall patterns of behaviour to be studied and suitable models for individual case stars to be identified. The star SZ Lyn was chosen as a test case for the model. Light curve and radial velocity data were obtained for this star using amateur equipment. A run of 625 parameter sets (mass, luminosity, effective temperature and hydrogen fraction) identified the best fit parameters for SZ Lyn. Model results show a good fit to the observed data in terms of amplitude, period and shape of the light and velocity curves. In this paper we report on the model developed by PM and radial velocity observations by RL.
模拟脉动恒星
自 20 世纪 60 年代罗伯特-克里斯蒂(Robert Christy)的开创性工作以来,人们一直在使用非线性流体动力学代码对脉动恒星进行研究。现代代码包括一些改进,如允许对流,但在计算速度方面会有影响,而且对某些恒星来说对流并不重要。在这项工作中,开发了克里斯蒂程序的一个新版本,它可以在一两天的计算机时间内运行数百个恒星模型并达到收敛。这样就可以对整体行为模式进行研究,并为个别情况下的恒星确定合适的模型。SZ Lyn 星被选为该模型的测试案例。利用业余设备获得了这颗恒星的光曲线和径向速度数据。通过运行 625 个参数集(质量、光度、有效温度和氢分数),确定了 SZ Lyn 星的最佳拟合参数。模型结果表明,在光速曲线的振幅、周期和形状方面,模型与观测数据拟合良好。本文报告了 PM 建立的模型和 RL 的径向速度观测结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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