论文标题

经典头孢虫的扩展理论场景。 I. Gaia光度法中的银河系头

An extended theoretical scenario for Classical Cepheids. I. Modeling Galactic Cepheids in the Gaia photometric system

论文作者

De Somma, G., Marconi, M., Molinaro, R., Cignoni, M., Musella, I., Ripepi, V.

论文摘要

我们根据经过良好测试的非线性流体动力学方法提出了一套新的扩展且详细的模型($ z = 0.02 $,$ y = 0.28 $),用于太阳化学成分的经典头孢脉脉动脉冲($ z = 0.02 $,$ y = 0.28 $)。为了模拟对关键假设的可能依赖性,例如中央氦气燃烧中间质量恒星的质量 - 光度关系或超级灭热对流的效率,模型集计算得不仅是通过变化的脉动模式和恒星质量的变化来计算,而且是巨大的关系和混合长度参数,用于关闭Nonnon and and and and symel的混合参数。讨论了不稳定性条的预测边界以及光和径向速度曲线对假定的质量光度和超绝热对流的效率的依赖性。还计算了非线性周期质量 - 露天温度,周期 - 拉迪乌斯和周期 - 拉迪乌斯关系。基本和第一个泛音模式的降压光曲线的理论地图集已在Gaia过滤器$ g $,$ g_ {bp} $和$ g_ {br} $中转换为已转换。最后,提供了Gaia过滤器中的第一个理论时期 - 亮度色和周期性关系,并将最终的理论视差与Gaia Data Release 2进行了比较。

We present a new extended and detailed set of models for Classical Cepheid pulsators at solar chemical composition ($Z=0.02$, $Y=0.28$) based on a well tested nonlinear hydrodynamical approach. In order to model the possible dependence on crucial assumptions such as the Mass-Luminosity relation of central Helium burning intermediate-mass stars or the efficiency of superadiabatic convection, the model set was computed by varying not only the pulsation mode and the stellar mass but also the Mass-Luminosity relation and the mixing length parameter that is used to close the system of nonlinear hydrodynamical and convective equations. The dependence of the predicted boundaries of the instability strip as well as of both light and radial velocity curves on the assumed Mass-Luminosity and the efficiency of superadiabatic convection is discussed. Nonlinear Period-Mass-Luminosity-Temperature, Period-Radius and Period-Mass-Radius relations are also computed. The theoretical atlas of bolometric light curves for both the fundamental and first overtone mode has been converted in the Gaia filters $G$, $G_{BP}$ and $G_{BR}$ and the corresponding mean magnitudes have been derived. Finally the first theoretical Period-Luminosity-Color and Period-Wesenheit relations in the Gaia filters are provided and the resulting theoretical parallaxes are compared with Gaia Data Release 2 results for both fundamental and first overtone Galactic Cepheids.

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