论文标题

附近气体螺旋的星系合并特征的可观察性

The observability of galaxy merger signatures in nearby gas-rich spirals

论文作者

McElroy, Rebecca, Bottrell, Connor, Hani, Maan H., Moreno, Jorge, Croom, Scott M., Hayward, Christopher C., Twum, Angela, Feldmann, Robert, Hopkins, Philip F., Hernquist, Lars, Husemann, Bernd

论文摘要

星系合并对于了解星系进化至关重要,因此,我们必须确定它们的观察性签名,以便从大型IFU星系样本(例如Muse和Sami)中选择它们。我们基于“现实环境中的反馈”(FIRE-2)模型采用24种高分辨率理想的流体动力学合并模拟,以使用合成图像和速度图来确定合并对各种配置和阶段的可观察性。我们的合并涵盖了固定的1:2.5恒星质量比,在低红移时,有两种富含气体的螺旋形。计算形态学和运动学不对称,用于跨越每种相互作用的合成图像和速度图。我们将相互作用序列分为三个:(1)成对相; (2)合并阶段; (3)钙化后阶段。我们使用运动学不对称性(66%完整性)在结合后的第一个洋地段通道和500 MYR之间正确地识别合并,这取决于合并阶段和观察的视野。我们检测到成对阶段的合并较少(40%),在合并和钙化后阶段(97%)中的合并较少。我们发现,合并可检测性会随着视野而降低,除了逆行合并,中央浓缩的不对称运动学特征可增强其可检测性。使用从光度法和运动学不对称的组合得出的截止值,我们将这些检测增加到89%的总体,成对79%,在合并和煤气后阶段接近100%。通过使用这种组合的不对称截止,我们减轻了由较小的视野较小的视野造成的效果,该效果由大量多路复用的积分光谱程序刺激。

Galaxy mergers are crucial to understanding galaxy evolution, therefore we must determine their observational signatures to select them from large IFU galaxy samples such as MUSE and SAMI. We employ 24 high-resolution idealised hydrodynamical galaxy merger simulations based on the "Feedback In Realistic Environment" (FIRE-2) model to determine the observability of mergers to various configurations and stages using synthetic images and velocity maps. Our mergers cover a range of orbital configurations at fixed 1:2.5 stellar mass ratio for two gas rich spirals at low redshift. Morphological and kinematic asymmetries are computed for synthetic images and velocity maps spanning each interaction. We divide the interaction sequence into three: (1) the pair phase; (2) the merging phase; and (3) the post-coalescence phase. We correctly identify mergers between first pericentre passage and 500 Myr after coalescence using kinematic asymmetry with 66% completeness, depending upon merger phase and the field-of-view of the observation. We detect fewer mergers in the pair phase (40%) and many more in the merging and post-coalescence phases (97%). We find that merger detectability decreases with field-of-view, except in retrograde mergers, where centrally concentrated asymmetric kinematic features enhances their detectability. Using a cut-off derived from a combination of photometric and kinematic asymmetry, we increase these detections to 89% overall, 79% in pairs, and close to 100% in the merging and post-coalescent phases. By using this combined asymmetry cut-off we mitigate some of the effects caused by smaller fields-of-view subtended by massively multiplexed integral field spectroscopy programmes.

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