论文标题
湍流分子云中的光离子反馈
Photoionization feedback in turbulent molecular clouds
论文作者
论文摘要
我们介绍了一项研究,来自年轻大型恒星对恒星形成分子云的湍流统计的影响。预计该反馈会改变分子云的密度结构,并影响未来的恒星形成。使用Amun-Rad代码,我们首先在周期盒中生成一个收敛的等温强度湍流密度结构。然后,我们将电离源插入此框中,并使用两个温度的伪等体式方程式注入光电离能。我们研究盒子中不同位置和不同源亮度的来源的影响。我们发现,当在光电离心源的存在下继续驱动湍流时,光电离会对2D和3D的湍流统计有很小的影响。仅如果允许湍流腐烂,光电离才能破坏云。在前一种情况下,我们的模型云中HII区域的存在不会导致对可观察数量的显着影响,而与源参数无关。
We present a study of the impact of photoionization feedback from young massive stars on the turbulent statistics of star-forming molecular clouds. This feedback is expected to alter the density structure of molecular clouds and affect future star formation. Using the AMUN- Rad code, we first generate a converged isothermal forced turbulent density structure inside a periodic box. We then insert an ionizing source in this box and inject photoionization energy using a two-temperature pseudo-isothermal equation of state. We study the impact of sources at different locations in the box and of different source luminosities. We find that photoionization has a minor impact on the 2D and 3D statistics of turbulence when turbulence continues to be driven in the presence of a photoionizing source. Photoionization is only able to disrupt the cloud if the turbulence is allowed to decay. In the former scenario, the presence of an HII region inside our model cloud does not lead to a significant impact on observable quantities, independent of the source parameters.