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Keck OSIRIS AO LIRG Analysis (KOALA): Feedback in the Nuclei of Luminous Infrared Galaxies

机译:Keck OSIRIS AO LIRG分析(KOALA):发光红外星系核中的反馈

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The role of feedback in triggering or quenching star formation and hence driving galaxy evolution?can be directly studied with high-resolution integral field observations. The manifestation of feedback in shocks is particularly important to examine in galaxy mergers, where violent interactions of gas take place in the interstellar medium during the course of the galactic collision. As part of?our effort to systematically study the local population of luminous infrared galaxies within the Great Observatories All-Sky LIRG Survey, we undertook?the Keck OSIRIS AO LIRG Analysis observing campaign to study the gas dynamics?in the inner kiloparsec regions of these systems at? spatial scales of a few tens of pc. With high-resolution near-infrared adaptive optics–assisted integral field observations taken with OSIRIS on the Keck Telescopes, we employ near-infrared diagnostics such as? Brγ?and the rovibrationally excited H2?lines to quantify the nuclear star formation rate and identify feedback associated with shocked molecular gas seen in 21 nearby luminous infrared galaxies. Shocked molecular gas is preferentially found in the ultraluminous infrared systems but may also be triggered at a lower-luminosity, earlier merging stage. On circumnuclear scales, AGNs have a strong effect on heating the surrounding molecular gas, though their coupling is not simply driven by AGN strength but rather is complicated by orientation, dust shielding, density, and other factors. We find that nuclear star formation correlates with? merger class and diminishing projected nuclear separations. These trends are largely consistent with the picture of merger-induced starbursts in the center of galaxy mergers.
机译:可以在高分辨率积分场观测中直接研究反馈在触发或猝灭恒星形成并因此驱动星系演化中的作用。震动中反馈的表现对于在银河系合并中进行检查尤为重要,在银河系合并中,星系碰撞过程中气体在星际介质中发生了剧烈的相互作用。作为“大天文台全天LIRG调查”中系统研究夜光红外星系本地人口工作的一部分,我们开展了“ Keck OSIRIS AO LIRG分析”观测活动,以研究这些星系内部千帕区域的气体动力学。系统在?几十pc的空间尺度。借助在凯克望远镜上使用OSIRIS进行的高分辨率近红外自适应光学辅助积分场观测,我们采用了诸如用Brγα和原边激发的H2α线来量化核星的形成速率,并确定与在附近的21个发光红外星系中看到的冲击分子气体相关的反馈。优先在超发光红外系统中发现冲击分子气体,但也可能在较低发光度,更早的合并阶段触发。在环核尺度上,AGN对加热周围的分子气体有很强的作用,尽管它们的耦合不是简单地由AGN强度驱动,而是由于定向,防尘,密度和其他因素而变得复杂。我们发现核星的形成与?合并类别和减少预计的核隔离。这些趋势在很大程度上与银河系合并中心的合并引起的爆炸有关。
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