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DO THE MAGELLANIC CEPHEIDS POSE A NEW PUZZLE?

机译:麦哲伦坟墓带来了新的难题吗?

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摘要

The observed Magellanic Cloud (MC) Cepheid data pose a new challenge to both stellar structure and stellar evolution. The Fourier analysis of the LMC and SMC data indicate that the 2:1 resonance (P_2/P_0 = 0.5) between the fundamental mode of pulsation and the second overtone occurs with a period P_0 of ≈10 days, just as in our Galaxy. The implications of this resonance are difficult to reconcile with linear radiative Cepheid models computed for the low metallicity of the MC. They also require a large upward shift in the mass-luminosity relation (MLR), seemingly larger than is comfortable for evolutionary calculations. The disagreement worsens if we interpret the structure in the first overtone Fourier parameters near 3 days as the result of an alleged resonance with the fourth overtone. In contrast to earlier expectations, the beat Cepheid data with P_1 /P_0 ≈ 0.7, as well as those with P_2/P_1 ≈ 0.8, impose weak constraints, at best, on the MLRs.
机译:观测到的麦哲伦星云(MC)造父变星数据对恒星结构和恒星演化都提出了新的挑战。对LMC和SMC数据的傅里叶分析表明,基本脉动模式和第二次泛音之间的2:1共振(P_2 / P_0 = 0.5)发生的时间P_0约为10天,就像我们的银河系一样。这种共振的含义很难与为MC的低金属性而计算的线性辐射造父变星模型调和。它们还需要质量-光度关系(MLR)大幅上移,这似乎比进行进化计算所需要的大。如果我们在三天之内解释第一个泛音傅立叶参数中的结构,即所谓的第四个泛音的共振结果,则分歧会加剧。与早先的期望相反,具有P_1 / P_0≈0.7的拍子造父变星数据以及具有P_2 / P_1≈0.8的拍子造父变星数据最多对MLR施加了弱约束。

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