论文标题

在影响KPC气盘的无线电agn的模拟中电离范围

The extent of ionization in simulations of radio-loud AGNs impacting kpc gas discs

论文作者

Meenakshi, Moun, Mukherjee, Dipanjan, Wagner, Alexander Y., Nesvadba, Nicole P. H., Morganti, Raffaella, Janssen, Reinier M. J., Bicknell, Geoffrey V.

论文摘要

我们使用与无线电大通AGN的星系中喷射主义相互作用的相对论流体动力学模拟的结果来量化气态银河盘的中央少数KPC的电离程度。我们通过模拟的气体喷射盘盘对AGN辐射进行后处理后的辐射转移,以估计AGN的光电量的程度,其入射光度为$ 10^{45}〜\ Mathrm {erg {erg {erg {erg \,s^{ - 1}}} $。我们还绘制了由于喷气机驱动的冲击而碰撞电离的气体。对具有类似喷气功率的模拟进行了分析($ 10^{45}〜\ Mathrm {erg \,s^{ - 1}} $),但相对于气盘的喷射方向不同。我们发现,喷气机的震动可以使圆盘中的大量($ n> 100 \,\ Mathrm {cm^{ - 3}} $)在圆盘中电离($ n> 100 \,\ n> 100 \,\ n> 100 \,\%$ $ \%$),并且喷气机在圆盘中渗透到较大的距离较大的距离中的中央区域清除了圆盘的中央区域。与垂直射流相比,与ISM更强烈地倾向于朝向圆盘平面的喷气机,并使圆盘中较大的气体电离。但是,与以前的研究类似,我们发现AGN辐射很快被盘中的密云的外层吸收,并且无法在全球范围内实质上将盘式化。因此,与喷气主义相互作用相比,我们期望AGN辐射的光电发量仅对银河盘中央区域的恒星形成活性($ \ lessim 1 $ kpc)影响,尽管喷气引起的冲击可以扩散到更远的地方。

We use the results of relativistic hydrodynamic simulations of jet-ISM interactions in a galaxy with a radio-loud AGN to quantify the extent of ionization in the central few kpcs of the gaseous galactic disc. We perform post-process radiative transfer of AGN radiation through the simulated gaseous jet-perturbed disc to estimate the extent of photo-ionization by the AGN with an incident luminosity of $10^{45}~\mathrm{erg\,s^{-1}}$. We also map the gas that is collisionally ionized due to shocks driven by the jet. The analysis was carried out for simulations with similar jet power ($10^{45}~\mathrm{erg\,s^{-1}}$) but different jet orientations with respect to the gas disc. We find that the shocks from the jets can ionize a significant fraction (up to 33$\%$) of dense gas ($n>100\,\mathrm{cm^{-3}}$) in the disc, and that the jets clear out the central regions of gas for AGN radiation to penetrate to larger distances in the disc. Jets inclined towards the disc plane couple more strongly with the ISM and ionize a larger fraction of gas in the disc as compared to the vertical jet. However, similar to previous studies, we find that the AGN radiation is quickly absorbed by the outer layers of dense clouds in the disc, and is not able to substantially ionize the disc on a global scale. Thus, compared to jet-ISM interactions, we expect that photo-ionization by the AGN radiation only weakly affects the star-formation activity in the central regions of the galactic disc ($\lesssim 1$ kpc), although the jet-induced shocks can spread farther out.

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