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首页> 外文期刊>The Astrophysical journal >BEAT CEPHEIDS AS PROBES OF STELLAR AND GALACTIC METALLICITY. II. OPACITIES WITH THE AGS MIXTURE
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BEAT CEPHEIDS AS PROBES OF STELLAR AND GALACTIC METALLICITY. II. OPACITIES WITH THE AGS MIXTURE

机译:跳动的球体为恒星和银河金属。二。 AGS混合物的功能

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摘要

It is well known that the mere location of a beat Cepheid model in a period ratio versus period diagram (Petersen diagram) puts constraints on its metallicity Z. But these bounds are sensitive to the mixture of elements that are lumped into the parameter Z. In this short paper we update the previous results that were based on the Grevesse-Noels solar mixture to the recent, revised Asplund, Grevesse, & Sauval (AGS) solar mixture. We also examine the effect of the envelope depth on the accuracy of the computed pulsation periods. We find that for low-period Cepheids with high Z the customary approximation of envelope pulsation breaks down. It is necessary to compute stellar models that extend to the center and to include burning and composition inhomogeneities in the modeling. Fortunately, however, most beat Cepheids that have been observed so far seem to avoid that regime.
机译:众所周知,拍拍造父变星模型在周期比与周期图(彼得森图)中的唯一位置对其金属性Z施加了约束。但是,这些界限对集总到参数Z中的元素的混合非常敏感。在这篇简短的论文中,我们将基于Grevesse-Noels太阳能混合物的先前结果更新为最近修订的Asplund,Grevesse和Sauval(AGS)太阳能混合物。我们还检查了包络深度对计算脉动周期准确性的影响。我们发现,对于高Z值的低周期造父变星,包络脉动的惯常近似分解了。有必要计算延伸到中心的恒星模型,并在模型中包括燃烧和成分不均匀性。然而,幸运的是,迄今为止观察到的大多数击败造父变星似乎都在避免这种政权。

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