论文标题
ogle的周期彩色和振幅彩色关系-Ugle-$δ$ scuti星星在银河凸起和LMC中
Period-Colour and Amplitude-Colour relations for OGLE-$δ$ Scuti stars in the Galactic Bulge and LMC
论文作者
论文摘要
我们对银河凸起的行为和大型麦哲伦云(LMC)$δ$ scuti星的行为进行了分析,该恒星就周期彩色和幅度 - 彩色(PCAC)的关系而言,在最大,平均值和最小光线下。用于分析的lmc $δ$ Scuti星的公开可用的光引力镜头实验(OGLE-IV)光曲线和Ogle-III光曲线用于分析。已经发现,银河凸起$δ$ scuti恒星以最大/平均/最小照明遵守平坦的PC关系,而LMC $δ$ scutis在最大/平均/最小光线下倾斜/倾斜/倾斜/平面PC关系。银河膨胀和LMC $δ$ Scutis都以最大/平均/最小值倾斜/平坦/倾斜的交流关系。这些关系还表明,与LMC同行相比,银河$δ$ scutis更热。 $δ$ Scutis的周期振幅(PA)关系在银河凸起和LMC中表现出不同的行为。发现LMC变量在给定期间具有较高的幅度。银河凸出$δ$ scuti的幅度显示了双峰分布,可以使用两分量的高斯混合模型对其进行建模:一种具有较低振幅且幅度较高的成分。 $δ$ SCUTI PCAC关系的观察到的行为可以使用氢电离前(HIF)和Stellar Photosphere的相互作用以及PA图来解释。我们使用MESA-RSP来计算$δ$ Scuti星的理论非线性流体动力脉动模型,其输入金属度分别为$ z = 0.02 $和$ z = 0.008 $,适用于银河凸出和LMC。观察到的PCAC关系和理论计算支持HIF光层相互作用理论。
We present an analysis on the behaviour of the Galactic bulge and the Large Magellanic Cloud (LMC) $δ$ Scuti stars in terms of period-colour and amplitude-colour (PCAC) relations at maximum, mean and minimum light. The publicly available Optical Gravitational Lensing Experiment-IV (OGLE-IV) light curves for Galactic bulge and OGLE-III light curves for LMC $δ$ Scuti stars are exploited for the analysis. It has been found that the Galactic bulge $δ$ Scuti stars obey flat PC relations at maximum/mean/minimum light while the LMC $δ$ Scutis have sloped/sloped/flat PC relations at maximum/mean/minimum light. Both the Galactic bulge and the LMC $δ$ Scutis have sloped/flat/sloped AC relations at maximum/mean/minimum. These relations also show that Galactic $δ$ Scutis are hotter as compared to their LMC counterparts. The period-amplitude (PA) relations for $δ$ Scutis exhibit different behaviour in the Galactic bulge and the LMC. The LMC variables are found to have higher amplitudes at a given period. The amplitude of the Galactic bulge $δ$ Scuti shows a bimodal distribution which can be modelled using a two-component Gaussian Mixture Model: one component with a lower amplitude and another with a higher amplitude. The observed behaviour of the $δ$ Scuti PCAC relations can be explained using the theory of the interaction of hydrogen ionization front (HIF) and stellar photosphere as well as the PA diagram. We use MESA-RSP to calculate theoretical non-linear hydrodynamical pulsation models for $δ$ Scuti stars with input metallicities of $Z=0.02$ and $Z=0.008$ appropriate for the Galactic bulge and LMC, respectively. The observed PCAC relations and theoretical calculations support the HIF-photosphere interaction theory.