论文标题

用苔丝揭示$δ$ scuti星的功率谱。温度,重力和频率缩放关系

Unveiling the power spectra of $δ$ Scuti stars with TESS. The temperature, gravity, and frequency scaling relation

论文作者

Forteza, S. Barceló, Moya, A., Barrado, D., Solano, E., Martín-Ruiz, S., Suárez, J. C., Hernández, A. García

论文摘要

得益于Corot和Kepler等太空望远镜的高精度光度数据传统,科学界可以检测和表征数十万颗恒星的功率光谱。使用缩放关系,可以估算太阳能脉动器的质量和半径。但是,这些恒星并不是遵循以下规则的唯一恒星对象:$δ$ scuti恒星似乎以大型分离($Δν$)等地震索引来表征。得益于长期高效力苔丝光曲线,我们分析了超过2000种此类古典脉动器。这样,我们将最大功率($ν_ {\ rm max} $)的频率作为适当的地震索引,因为它与恒星的内在温度,质量和半径直接相关。除了恒星参数的演变外,此参数似乎不受旋转,倾斜度,消光或共振的影响。此外,我们可以使用重力 - 黑色效应产生的温度偏离来限制旋转和倾斜度。这对于快速旋转器尤其可行,因为大多数$δ$ Scuti恒星似乎都是。

Thanks to high-precision photometric data legacy from space telescopes like CoRoT and Kepler, the scientific community could detect and characterize the power spectra of hundreds of thousands of stars. Using the scaling relations, it is possible to estimate masses and radii for solar-type pulsators. However, these stars are not the only kind of stellar objects that follow these rules: $δ$ Scuti stars seem to be characterized with seismic indexes such as the large separation ($Δν$). Thanks to long-duration high-cadence TESS light curves, we analysed more than two thousand of this kind of classical pulsators. In that way, we propose the frequency at maximum power ($ν_{\rm max}$) as a proper seismic index since it is directly related with the intrinsic temperature, mass and radius of the star. This parameter seems not to be affected by rotation, inclination, extinction or resonances, with the exception of the evolution of the stellar parameters. Furthermore, we can constrain rotation and inclination using the departure of temperature produced by the gravity-darkening effect. This is especially feasible for fast rotators as most of $δ$ Scuti stars seem to be.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源