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Reaching the 1 accuracy level on stellar mass and radius determinations from asteroseismology

机译:达到恒星质量和半径测定的1%精度水平来自昏昏欲睡术学

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Asteroseismic modeling of subdwarf B (sdB) stars provides measurements of their fundamental parameters with a very good precision; in particular, the masses and radii determined from asteroseismology are found to typically reach a precision of 1% containing various uncertainties associated with their inner structure and the underlying microphysics (composition and transition zones profiles, nuclear reaction rates, etc.). Therefore, the question of the accuracy of the stellar parameters derived by asteroseismology is legitimate. We present here the seismic modeling of the pulsating sdB star in the eclipsing binary PG 1336-018, for which the mass and the radius are-independently and precisely known from the modeling of the reflection/irradiation effect and the eclipses observed in the light curve.. This allows us to quantitatively evaluate the reliability of the seismic method and test the impact of uncertainties in our stellar models on the derived parameters. We conclude that the sdB star parameters inferred from asteroseismology are precise, accurate, and robust against model uncertainties.
机译:Subdwarf B(SDB)恒星的Asteroseismic建模提供了它们的基本参数的测量,具有非常好的精度;特别地,发现由张开的囊姿集测定的质量和半径通常达到1%的精度,含有与其内部结构相关的各种不确定性和底层的微物质(组成和过渡区谱,核反应率等)。因此,由波状术学得出的恒星参数的准确性问题是合法的。这里我们在这里存在脉动二进制PG1336-018中的脉动SDB星的地震建模,其中质量和半径是独立的,并且从反射/照射效果的建模和在光线中观察到的eClipses ..这使我们可以定量评估地震方法的可靠性,并测试在衍生参数上的恒星模型中的不确定性的影响。我们得出结论,从波峰姿态学中推断的SDB星参数精确,准确,稳健地防止模型不确定性。

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