首页> 外文期刊>Astronomy and astrophysics >Nonradial and radial period changes of the δ Scuti star 4 CVn - II. Systematic behavior over 40 years
【24h】

Nonradial and radial period changes of the δ Scuti star 4 CVn - II. Systematic behavior over 40 years

机译:δScuti星4 CVn-II的非径向和径向周期变化。 40多年来的系统行为

获取原文
           

摘要

Aims. Radial and nonradial pulsators on and near the main sequence show period and amplitude changes that are too large to be the product of stellar evolution. The multiperiodic δ Sct stars are well suited to study this, as the period changes of different modes excited in the same star can be compared. This requires a very large amount of photometric data covering years and decades as well as mode identifications. Methods. We have examined over 800 nights of high-precision photometry of the multiperiodic pulsator 4 CVn obtained from 1966 through 2012. Because most of the data were obtained in adjacent observing seasons, it is possible to derive very accurate period values for a number of the excited pulsation modes and to study their systematic changes from 1974 to 2012. Results. Most pulsation modes show systematic significant period and amplitude changes on a timescale of decades. For the well-studied modes, around 1986 a general reversal of the directions of both the positive and negative period changes occurred. Furthermore, the period changes between the different modes are strongly correlated, although they differ in size and sign. For the modes with known values of the spherical degree and azimuthal order, we find a correlation between the direction of the period changes and the identified azimuthal order, m . The associated amplitude changes generally have similar timescales of years or decades, but show little systematic or correlated behavior from mode to mode. Conclusions. A natural explanation for the opposite behavior of the prograde and retrograde modes is that their period changes are driven by a changing rotation profile. The changes in the rotation profile could in turn be driven by processes, perhaps the pulsations themselves, that redistribute angular momentum within the star. In general, different modes have different rotation kernels, so this will produce period shifts of varying magnitude for different modes.
机译:目的主序列及其附近的径向和非径向波轮显示出周期和振幅变化,这些变化太大,无法成为恒星演化的产物。多周期δSct星非常适合研究此问题,因为可以比较在同一颗星中激发的不同模式的周期变化。这需要涵盖数十年和数十年的大量光度数据以及模式识别。方法。我们检查了从1966年到2012年获得的800多个多周期脉动器4 CVn的高精度光度法。由于大多数数据是在相邻观测季节获得的,因此有可能得出许多激发态的非常精确的周期值脉动模式并研究其在1974年至2012年间的系统变化。结果。大多数脉动模式在几十年的时间尺度上显示出系统的显着周期和幅度变化。对于经过充分研究的模式,在1986年前后,正向和负向周期变化的方向都发生了总体逆转。此外,尽管它们的大小和符号不同,但它们之间的周期变化密切相关。对于具有球形度和方位角阶值的已知模,我们发现周期变化的方向与所识别的方位角阶m之间具有相关性。相关的振幅变化通常具有相似的几年或几十年的时间尺度,但是在模式之间几乎没有系统或相关的行为。结论。对于前进和后退模式相反行为的自然解释是,它们的周期变化是由变化的旋转曲线驱动的。旋转轮廓的变化又可以由过程(可能是脉动本身)驱动,这些过程会重新分配恒星内的角动量。通常,不同的模式具有不同的旋转内核,因此对于不同的模式,这将产生大小变化的周期移位。

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