论文标题

具有经典头孢虫的更新的金属依赖性理论场景

An updated metal-dependent theoretical scenario for Classical Cepheids

论文作者

De Somma, Giulia, Marconi, Marcella, Molinaro, Roberto, Ripepi, Vincenzo, Leccia, Silvio, Musella, Ilaria

论文摘要

为了正确量化影响经典状态距离尺度的可能残留系统错误,建议使用详细的理论情况。通过将以$ z = 0.02 $ \ citep [] [] [] [] [] {Desomma2020a}发布的发行的非线性对流脉动模型扩展到$ z = 0.004 $,$ z = 0.008 $和$ z = 0.03 $,我们提供了一种详细的非线性模型,同时提供了质量的相对效率,并提供了相关性的质量,并提供了相关性的质量。 作品。针对输入参数,讨论了推断的时期 - 拉迪乌斯,周期 - 质量 - 拉迪乌斯和周期 - 质量 - 劳度 - 温度关系的依赖性。对于其他ML假设和混合长度值,确认了随着金属性的增加而变红的趋势。从获得的多滤波器曲线中,我们得出了平均幅度和颜色的平均尺寸和颜色,进而为每个假定的化学组成,超级寿命对流的质量组成,质量 - 光度关系和效率而言。应用在大麦芽岩中的经过良好研究的头孢菌样本使我们能够约束推断距离模量对假定的质量 - 露光性关系的依赖,以及金属性项在周期性wesenheit的推导中的包容性,可以预测我们假定的质量 - 肿块关系距离,可预测ccept的量表。将所获得的金属依赖性周期性关系与文献中的最新结果进行了比较,并应用于Gaia早期数据样本,释放3个银河系头,具有已知金属丰度,以得出单个视差。最终讨论了这些预测与GAIA结果的比较。

To properly quantify possible residual systematic errors affecting the Classical Cepheid distance scale, a detailed theoretical scenario is recommended. By extending the set of nonlinear convective pulsation models published for $Z=0.02$ \citep[][]{Desomma2020a} to $Z=0.004$, $Z=0.008$ and $Z=0.03$, we provide a detailed homogeneous nonlinear model grid taking into account simultaneous variations of the mass-luminosity relation, the efficiency of super-adiabatic convection and the chemical composition. The dependence of the inferred Period-Radius, Period-Mass-Radius, and Period-Mass-Luminosity-Temperature relations on the input parameters is discussed for both the Fundamental and First Overtone modes. The trend of the instability strip getting redder as the metallicity increases is confirmed for the additional ML assumptions and mixing length values. From the obtained multi-filter light curves, we derive mean magnitudes and colors and in turn Period-Luminosity-Color and Period-Wesenheit relations for each assumed chemical composition, mass-luminosity relation and efficiency of super-adiabatic convection. Application to a well-studied sample of Cepheids in the Large Magellanic Cloud allows us to constrain the dependence of the inferred distance modulus on the assumed mass-luminosity relation, and the inclusion of the metallicity term in the derivation of Period-Wesenheit relations allows us, for each assumed mass-luminosity relation, to predict the metallicity dependence of the Cepheid distance scale. The obtained metal-dependent Period-Wesenheit relations are compared with recent results in the literature and applied to a sample of Gaia Early Data Release 3 Galactic Cepheids with known metal abundances to derive individual parallaxes. The comparison of these predictions with Gaia results is finally discussed.

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