首页> 外文期刊>Astronomy and astrophysics >CoRoT high-precision photometry of the B0.5?IV star HD?51756
【24h】

CoRoT high-precision photometry of the B0.5?IV star HD?51756

机译:B0.5?IV星HD?51756的CoRoT高精度光度法

获取原文
           

摘要

Context. OB stars are important constituents for the ecology of the Universe, and there are only a few studies on their pulsational properties detailed enough to provide important feedback on current evolutionary models. Aims. Our goal is to analyse and interpret the behaviour present in the CoRoT light curve of the B0.5?IV star HD?51756 observed during the second long run of the space mission and to determine the fundamental stellar parameters from ground-based spectroscopy gathered with the Coralie and Harps instruments after checking for signs of variability and binarity, thus making a step further in mapping the top of the β?Cep instability strip. Methods. We compared the newly obtained high-resolution spectra with synthetic spectra of late O-type and early B-type stars computed on a grid of stellar parameters. We matched the results with evolutionary tracks to estimate stellar parameters. We used various time series analysis tools to explore the nature of the variations present in the light curve. Additional calculations were carried out based on distance and historical position measurements of the components to impose constraints on the binary orbit. Results. We find that HD?51756 is a wide binary with both a slow (vsini?≈?28???km???s-1) and a fast (vsini?≈?170???km???s-1) early-B rotator whose atmospheric parameters are similar (Teff?≈?30???000???K and log?g?≈?3.75). We are unable to detect pulsation in any of the components, and we interpret the harmonic structure in the frequency spectrum as a sign of rotational modulation, which is compatible with the observed and deduced stellar parameters of both components. Conclusions. The non-detection of pulsation modes provides a feedback on the theoretical treatment, given that non-adiabatic computations applied to appropriate stellar models predict the excitation of both pressure and gravity modes for the fundamental parameters of this star.
机译:上下文。 OB恒星是宇宙生态的重要组成部分,关于其脉动特性的研究很少,其详细程度足以为当前的演化模型提供重要反馈。目的我们的目标是分析和解释在第二次长期太空飞行中观测到的B0.5?IV恒星HD?51756的CoRoT光曲线中的行为,并根据通过收集的地面光谱学确定基本恒星参数在检查了变异性和二元性的迹象后,Coralie and Harps仪器开始了这一工作,从而进一步绘制了β?Cep不稳定性带顶部的图。方法。我们将新获得的高分辨率光谱与在恒星参数网格上计算的晚期O型和早期B型恒星的合成光谱进行了比较。我们将结果与进化轨迹进行匹配,以估算恒星参数。我们使用了各种时间序列分析工具来探索光曲线中存在的变化的性质。基于组件的距离和历史位置测量值进行了其他计算,以对二元轨道施加约束。结果。我们发现HD?51756是一个宽二进制文件,具有慢速(vsini?≈?28 ??? km ??? s-1)和快速(vsini?≈?170 ??? km ??? s-1) )早期B转子,其大气参数相似(Teff?≈?30 ??? 000 ??? K和log?g?≈?3.75)。我们无法检测到任何组件中的脉动,并且我们将频谱中的谐波结构解释为旋转调制的标志,这与所观察到的和推导出的两个组件的恒星参数均兼容。结论。假设适用于适当恒星模型的非绝热计算可预测该恒星基本参数的压力和重力模式的激发,那么未检测到脉动模式将为理论处理提供反馈。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号