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首页> 外文期刊>The Astrophysical journal >MOLECULAR OUTFLOWS IN GALAXY MERGER SIMULATIONS WITH EMBEDDED ACTIVE GALACTIC NUCLEI
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MOLECULAR OUTFLOWS IN GALAXY MERGER SIMULATIONS WITH EMBEDDED ACTIVE GALACTIC NUCLEI

机译:嵌入有源银河核的银河系合并模拟中的分子流出

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We study the effects of feedback from active galactic nuclei (AGNs) on emission from molecular gas in galaxy mergers by combining hydrodynamic simulations that include black holes with a three-dimensional, non-local thermodynamic equilibrium (LTE) radiative transfer code. We find that molecular clouds entrained in AGN winds produce an extended CO morphology with significant off-nuclear emission, which may be detectable via contour mapping. Furthermore, kinematic signatures of these molecular outflows are visible in emission-line profiles when the outflow has a large line-of-sight velocity. Our results can help interpret current and upcoming observations of luminous infrared galaxies, as well as provide a detailed test of subresolution prescriptions for supermassive black hole growth in galaxy-scale hydrodynamic simulations.
机译:我们通过结合包括黑洞的流体动力学模拟和三维非局部热力学平衡(LTE)辐射转移代码,研究了活跃银河系原子核(AGNs)反馈对星系合并中分子气体排放的影响。我们发现,在AGN风中夹带的分子云产生了扩展的CO形态,具有明显的核外发射,这可以通过轮廓图检测到。此外,当流出具有较大的视线速度时,这些分子流出的运动学特征在排放线轮廓中可见。我们的结果可以帮助解释当前和即将发生的发光红外星系的观测结果,并为星系规模流体动力学模拟中超大规模黑洞生长的亚分辨率处方提供详细测试。

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