首页> 外文期刊>The Astrophysical journal >FEEDBACK-DRIVEN EVOLUTION OF THE FAR-INFRARED SPECTRAL ENERGY DISTRIBUTIONS OF LUMINOUS AND ULTRALUMINOUS INFRARED GALAXIES
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FEEDBACK-DRIVEN EVOLUTION OF THE FAR-INFRARED SPECTRAL ENERGY DISTRIBUTIONS OF LUMINOUS AND ULTRALUMINOUS INFRARED GALAXIES

机译:发光和超发光红外星系的远红外光谱能量分布的反馈驱动演化

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We calculate infrared spectral energy distributions (SEDs) from simulations of major galaxy mergers, and study the effect of active galactic nucleus (AGN) and starburst-driven feedback on the evolution of the SED as a function of time. We use a self-consistent three-dimensional radiative equilibrium code to calculate the emergent SEDs and to make images. To facilitate a simple description of our findings, we describe our results in reference to an approximate analytic solution for the far-IR SED. We focus mainly on the luminous infrared galaxy (LIRG) and ultraluminous infrared galaxy (ULIRG) phases of evolution. We contrast the SEDs of simulations performed with AGN feedback to simulations performed with starburst-driven wind feedback. We find that the feedback processes critically determine the evolution of the SED. Changing the source of illumination (whether stellar or AGN) has virtually no impact on the reprocessed far-infrared SED. We find that AGN feedback is particularly effective at dispersing gas and rapidly injecting energy into the ISM. The observational signature of such powerful feedback is a warm SED. In general, simulations performed with starburst-driven winds have colder spectra and reprocess more of their emission into the infrared, resulting in higher infrared to bolometric luminosities compared to (otherwise equivalent) simulations performed with AGN feedback. We depict our results in IRAS, as well as in Spitzer's MIPS bands, and in Herschel's PACS bands.
机译:我们通过模拟主要星系合并来计算红外光谱能量分布(SED),并研究活动银河核(AGN)和星爆驱动的反馈对SED随时间变化的影响。我们使用自洽的三维辐射平衡代码来计算出现的SED并制作图像。为了便于简单描述我们的发现,我们参考远红外SED的近似分析解决方案来描述我们的结果。我们主要关注发光红外星系(LIRG)和超发光红外星系(ULIRG)的演化阶段。我们将AGN反馈进行的模拟SED与星爆驱动的风反馈进行的模拟进行对比。我们发现,反馈过程至关重要地决定了SED的发展。改变照明源(无论是恒星还是AGN)对经过再处理的远红外SED几乎没有影响。我们发现,AGN反馈在分散气体和快速将能量注入ISM方面特别有效。如此强大的反馈的观察特征是温暖的SED。通常,用星爆驱动的风进行的模拟具有较冷的光谱,并将其更多的发射重新处理为红外线,与使用AGN反馈进行的模拟(否则等效)相比,红外到辐射热的亮度更高。我们在IRAS,Spitzer的MIPS乐队和Herschel的PACS乐队中描述了我们的结果。

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