论文标题
中间质量恒星辐射区域内重力波的二维模拟
Two-Dimensional Simulations of Internal Gravity Waves in The Radiation Zones of Intermediate-Mass Stars
论文作者
论文摘要
中间质量主序列星有大辐射信封对流核心。这种配置允许在对流辐射界面生成内部重力波(IGW),以向恒星表面传播。这些波的签名可以在恒星的光度和光谱数据中观察到。我们使用二维恒星演化代码,恒星天体物理学模块(MESA)研究了使用二维全单线性流体动力学模拟来研究这些IGW的传播。当强迫单波时,我们会观察到波自相互作用。当强迫两个波时,我们会观察到这些波在不同波长和频率下形成波的这些波之间的非线性相互作用(即三合会相互作用)。当强制强制使用类似于数值模拟中发现的波频谱时,我们发现表面IGW频率斜率与最近的观测值一致。该权力定律类似于线性理论对波传播的预测,其偏差很小,这可能是非线性的效果。当将相同的生成光谱应用于不同恒星旋转和年龄的3个太阳质量模型时,表面IGW频谱斜率与生成光谱斜率非常相似。
Intermediate-mass main sequence stars have large radiative envelopes overlying convective cores. This configuration allows internal gravity waves (IGWs) generated at the convective-radiative interface to propagate towards the stellar surface. The signatures of these waves can be observed in the photometric and spectroscopic data from stars. We have studied the propagation of these IGWs using two-dimensional fully-non-linear hydrodynamical simulations with realistic stellar reference states from the one-dimensional stellar evolution code, Modules for Stellar Astrophysics (MESA). When a single wave is forced, we observe wave self-interaction. When two waves are forced, we observe non-linear interaction (i.e. triadic interaction) between these waves forming waves at different wavelengths and frequencies. When a spectrum of waves similar to that found in numerical simulations is forced, we find that the surface IGW frequency slope is consistent with recent observations. This power law is similar to that predicted by linear theory for the wave propagation, with small deviations which can be an effect of nonlinearities. When the same generation spectrum is applied to 3 solar mass models at different stellar rotation and ages, the surface IGW spectrum slope is very similar to the generation spectrum slope.