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High resolution ALMA observations of dense molecular medium in the central regions of active galaxies

机译:活性星系中央区域致密分子介质的高分辨率Alma观察

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In the central regions of active galaxies, dense molecular medium are exposed to various types of radiation and energy injections, such as UV, X-ray, cosmic ray, and shock dissipation. With the rapid progress of chemical models and implementation of new-generation mm/submm interferometry, we are now able to use molecules as powerful diagnostics of the physical and chemical processes in galaxies. Here we give a brief overview on the recent ALMA results to demonstrate how molecules can reveal underlying physical and chemical processes in galaxies. First, new detections of Galactic molecular absorption systems with elevated HCO/H~(13)CO~+column density ratios are reported, indicating that these molecular media are irradiated by intense UV fields. Second, we discuss the spatial distributions of various types of shock tracers including HNCO, CH3OH and SiO in NGC 253 and NGC 1068. Lastly, we provide an overview of proposed diagnostic methods of nuclear energy sources using ALMA, with an emphasis on the synergy with sensitive mid-infrared spectroscopy, which will be implemented by JWST and SPICA to disentangle the complex nature of heavily obscured galaxies across the cosmic time.
机译:在活性星系的中心区域中,致密分子培养基暴露于各种类型的辐射和能量注入,例如UV,X射线,宇宙射线和震动耗散。随着化学模型的快速进展和新一代MM / ampl干涉测量的实施,我们现在能够使用分子作为星系中物理和化学过程的强大诊断。在这里,我们简要概述了最近的ALMA结果,以证明分子如何揭示在星系中的潜在的物理和化学过程。首先,报道了具有升高HCO / H〜(13)CO〜+柱密度比的半乳液分子吸收体系的新检测,表明这些分子介质被激烈的紫外线照射。其次,我们讨论了在NGC 253和NGC 1068中的各种类型的休克示踪剂的空间分布,包括HNCO,CH3OH和SIO。最后,我们概述了使用ALMA的核能源的诊断方法,重点是协同作用敏感的中红外光谱,将由JWST和Spica实施,以解散宇宙时间遮挡遮蔽星系的复杂性质。

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