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Hydrodynamic Instability of Ionization Front in HII Regions: From Linear to Nonlinear Evolution

机译:HII区电离锋的水动力不稳定性:从线性演化到非线性演化

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We investigate hydrodynamic instabilities at an ionization front in a radiatively driven molecular cloud, using two-dimensional hydrodynamic simulations, including absorption of UV radiation from OB stars, recombination in HII gas, and radiative molecular cooling. We find a strong stabilization mechanism, if the initial perturbation is small, whereas column like structures can emerge, if the perturbation is large. Recombination plays a key role in the observed stabilization mechanism. When recombination is turned off in the simulations, the stabilization disappears, and the perturbation grows at a growth rate consistent with the classical Rayleigh–Taylor instability.
机译:我们使用二维流体动力学模拟研究辐射驱动分子云中电离前沿的流体力学不稳定性,包括从OB星吸收UV辐射,在HII气体中重组以及辐射分子冷却。如果初始扰动很小,我们会找到一种强大的稳定机制,而如果扰动很大,则会出现类似圆柱的结构。重组在观察到的稳定机制中起关键作用。当在模拟中关闭重组时,稳定性消失,并且扰动以与经典瑞利-泰勒不稳定性一致的增长率增长。

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