论文标题
BL她的星星的理论框架。 I.金属性和对流参数对周期亮度和周期 - 拉迪乌斯关系的影响
A theoretical framework of BL Her stars. I. Effect of metallicity and convection parameters on period-luminosity and period-radius relations
论文作者
论文摘要
我们使用最先进的1D非线性径向恒星脉动工具Mesa-RSP提出了对流BL Herculis模型的新网格。我们研究了金属性和四组不同对流参数对多波长特性的影响。计算非线性模型的典型时期,即她的恒星,即$ 1 \ leq \ mathrm {p(days)} \ leq 4 $涵盖了广泛的输入参数 - 金属($ -2.0 \; \; \ mathrm {dex}} \ leq \ leq \ mathrm {fe \ mathrm {fe \ leq。 \ mathrm {dex} $),恒星质量(0.5m $ _ {\ odot} $ -08M $ _ {\ odot} $),光度(50l $ _ {\ odot} $ -300L $ _ {\ odot} $ _ {\ odot} $)和有效温度(有效温度(有效温度)和完整的Instability ost Instability spect; speess; speess;在本研究中使用的全振幅稳定脉动的BL总数在四组对流参数中为10280。我们获得了他们的多曲线($ ubvrijhkll'm $)光曲线,并得出了新的理论时期 - 轻度($ pl $),周期wesenheit($ pw $)和ofere-pw $)和ocient-radius($ pr $)($ pr $)关系。我们发现,使用辐射冷却计算的模型显示出统计上相似的斜率,$ pl $,$ pw $和$ pr $关系。大多数经验关系与理论$ PL $,$ pw $和$ pr $ ranative的理论关系非常吻合,从她的模型使用四组对流参数计算出来。但是,具有辐射冷却的模型的$ PL $斜率为BL在LMC中的BL中的经验关系提供了更好的匹配。对于每组对流参数,金属性的效果在$ u $和$ b $ bands中显着,并且在红外频段中可以忽略不计,这与经验结果一致。在$ pr $关系中没有看到明显的金属效应。
We present a new grid of convective BL Herculis models using the state-of-the-art 1D non-linear radial stellar pulsation tool MESA-RSP. We investigate the impact of metallicity and four sets of different convection parameters on multi-wavelength properties. Non-linear models were computed for periods typical for BL Her stars, i.e. $1 \leq \mathrm{P (days)} \leq 4$ covering a wide range of input parameters - metallicity ($-2.0\; \mathrm{dex} \leq \mathrm{[Fe/H]} \leq 0.0\; \mathrm{dex}$), stellar mass (0.5M$_{\odot}$-0.8M$_{\odot}$), luminosity (50L$_{\odot}$-300L$_{\odot}$) and effective temperature (full extent of the instability strip; in steps of 50K). The total number of BL Her models with full-amplitude stable pulsations used in this study is 10280 across the four sets of convection parameters. We obtain their multiband ($UBVRIJHKLL'M$) light curves and derive new theoretical period-luminosity ($PL$), period-Wesenheit ($PW$) and period-radius ($PR$) relations at mean light. We find that the models computed with radiative cooling show statistically similar slopes for $PL$, $PW$ and $PR$ relations. Most empirical relations match well with the theoretical $PL$, $PW$ and $PR$ relations from the BL Her models computed using the four sets of convection parameters. However, $PL$ slopes of the models with radiative cooling provide a better match to empirical relations for BL Her stars in the LMC in the $HK_S$ bands. For each set of convection parameters, the effect of metallicity is significant in $U$ and $B$-bands and negligible in infrared bands, which is consistent with empirical results. No significant metallicity effects are seen in the $PR$ relations.