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首页> 外文期刊>The Astrophysical journal >ON THE DRIVING MECHANISM AND THE COEXISTENCE OF VARIABLE AND NONVARIABLE STARS IN THE DOMAIN OF THE PULSATING PG 1159 STARS
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ON THE DRIVING MECHANISM AND THE COEXISTENCE OF VARIABLE AND NONVARIABLE STARS IN THE DOMAIN OF THE PULSATING PG 1159 STARS

机译:脉动PG 1159星域内变星和非变星的驱动机制和共存。

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We revisit the controversial question of the excitation of pulsation modes in models of PG 1159 stars that feature homogeneous envelopes with compositions comparable to those observed at the surface. We find, in agreement with some authors but contrary to others, that g-mode pulsations are naturally excited in such models and that there is no need to invoke composition gradients between the photosphere and the driving region in PG 1159 pulsators. We further find an excellent qualitative agreement between the range of predicted periods and the range of observed periods for all objects in our sample of pulsating stars, except for two models corresponding to the stars with the lowest surface gravities (central stars of planetary nebulae). We also address the problem of the coexistence of both variable and nonvariable PG 1159 stars in the same region of the log g-T_(eff) diagram. We find a natural explanation for this cohabitation in terms of a dispersion in atmospheric parameters and in terms of a variation in surface composition from star to star. In particular, the most He-rich stars tend to be stable. We finally address the puzzling question of the existence of a correlation between pulsations and the presence of traces of nitrogen in the atmospheres of pulsating PG 1159 stars, a challenge that has remained unanswered so far.
机译:我们重新审视了PG 1159恒星模型中有关脉动模态激发的有争议的问题,这些恒星的特征是具有均匀的包膜,其成分可与在地表观察到的成分相比。我们发现,与一些作者同意但与其他作者不同的是,在此类模型中自然激发了g模式脉动,并且无需在PG 1159脉动器中调用光球和驱动区域之间的成分梯度。我们进一步发现,在脉动恒星样本中,所有对象的所有天体的预测周期范围与观测到的周期范围之间都有极好的定性一致性,除了两个模型对应于具有最低表面重力的恒星(行星状星云的中心恒星)。我们还解决了对数g-T_(eff)图的同一区域中可变和不变PG 1159恒星并存的问题。我们从大气参数的分散性以及星与星之间表面成分的变化方面找到了对这种同居现象的自然解释。特别是,最富含He的恒星趋于稳定。我们终于解决了令人困惑的问题,即在脉动PG 1159恒星的大气层中,脉动与氮的踪迹之间存在相关性,这一挑战至今尚未得到解决。

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