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首页> 外文期刊>The Astrophysical journal >DRlVING THE GRAVITYMODE PULSATIONS IN gamma DORADUS VARIABLES
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DRlVING THE GRAVITYMODE PULSATIONS IN gamma DORADUS VARIABLES

机译:在伽玛DORADUS变量中驱动重力模式脉冲

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The gamma Doradus stars are a newly discovered class of gravity-mode pulsators that lie just at or beyond the red edge of the b Scuti instability strip. We present the results of calculations that the predict pulsation instability of high-order g-modes with periods between 0.4 and 3 days, as observed in these stars. The pulsations are driven by the modulation of the radiative flux by convection at the base of a deep envelope convection zone. Pulsation instability is predicted only for models with temperatures at the convection zone base between ~200,000 and ~480,000 K. The estimated shear dissipation that is due to turbulent viscosity within the convection zone or in an overshoot region below the convection zone can be comparable to or even exceed the predicted driving and is likely to reduce the number of unstable modes or possibly quench the instability. Additional refinements in the pulsation modeling are required to determine the outcome. At least one gamma Doradus star has been observed that also pulsates in δ Scuti--type p-modes, and others have been identified as chemically peculiar Since our calculated driving region is relatively deep, gamma Doradus pulsations are not necessarily incompatible with surface abundance peculiarities or with δ Scuti p-mode pulsations driven by the H and He ionization K-effect. Such stars will provide useful observational constraints on the proposed gamma Doradus pulsation mechanism.
机译:伽拉多拉多斯星是一类新近发现的重力模式脉动,位于b Scuti不稳定性带的红色边缘处或上方。我们提供了计算结果,即在这些恒星中观察到的高阶g模式在0.4至3天之间的周期内预测的脉动不稳定性。在深包络对流区的底部通过对流对辐射通量进行调制来驱动脉冲。仅对在对流区温度在〜200,000至〜480,000 K之间的模型预测脉动不稳定性。由于对流区内或对流区下方超调区域中的湍流粘度而导致的估计剪切耗散可与或相当。甚至超过了预期的驾驶量,并有可能减少不稳定模式的数量,或者可能消除不稳定因素。为了确定结果,需要对脉动建模进行其他改进。至少观察到一颗伽马Doradus恒星也以δScuti型p模式脉动,而其他恒星被认为是化学特有的。由于我们计算的驱动区域相对较深,因此伽马Doradus脉动不一定与表面丰度特质不兼容或由H和He电离K效应驱动的δScuti p模式脉动。这样的恒星将对提出的伽马多拉多斯脉动机制提供有用的观测约束。

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