论文标题
台风禁止星系的金属性梯度
Metallicity Gradient of Barred Galaxies with TYPHOON
论文作者
论文摘要
条在星系内部区域混合材料和刺激径向迁移中起着重要作用。先前的观察结果已经找到了钢筋对金属性梯度的影响的证据,但效果仍然尚无定论。我们使用台风/棱镜调查来研究整个五个附近星系的整个星形磁盘上沿条形区域的金属性梯度。使用发射线图来识别恒星形成的spaxels,我们恢复了从-0.0162到-0.073 DEX/KPC的全局金属性梯度,有证据表明银河条是影响静脉内恒星形成以及气体和恒星运动的代理。我们观察具有“浅阶段”金属性径向剖面的情况,有证据表明条形在条形区域内的金属性梯度(NGC〜5068和NGC〜1566)内部变平,并且还注意到棒似乎可以驱动陡峭的金属梯度产生陡峭的金属呈陡峭的金属型'Meltalicity'金属pifiles(Ngc 〜cc〜1365和Ngc〜1365和Ngc〜1365和ngc〜1365和Ngc〜1365和Ngc〜1365和Ngc〜1365和Ngc〜1365和NG〜〜对于NGC〜2835,``陡峭''金属梯度断裂发生在$ \ sim $ \ sim $ 4倍的bar半径$ 4倍,这很可能是由燃气积聚到银河郊区而不是酒吧的驱动。条形区域周围的金属性梯度的变化追踪了NGC〜1365,NGC〜1566和NGC〜1744中恒星形成速率表面密度的波动。需要较大的样品与流体动力学模拟,以进一步探索不同ISM混合机制在局部星系中气相金属梯度上的多样性和相对重要性。
Bars play an important role in mixing material in the inner regions of galaxies and stimulating radial migration. Previous observations have found evidence for the impact of a bar on metallicity gradients but the effect is still inconclusive. We use the TYPHOON/PrISM survey to investigate the metallicity gradients along and beyond the bar region across the entire star-forming disk of five nearby galaxies. Using emission line diagrams to identify star-forming spaxels, we recover the global metallicity gradients ranging from -0.0162 to -0.073 dex/kpc with evidence that the galactic bars act as an agent in affecting in-situ star formation as well as the motions of gas and stars. We observe cases with a `shallow-steep' metallicity radial profile, with evidence of the bar flattening the metallicity gradients inside the bar region (NGC~5068 and NGC~1566) and also note instances where the bar appears to drive a steeper metallicity gradient producing `steep-shallow' metallicity profiles (NGC~1365 and NGC~1744). For NGC~2835, a `steep-shallow' metallicity gradient break occurs at a distance $\sim$ 4 times the bar radius, which is more likely driven by gas accretion to the outskirt of the galaxy instead of the bar. The variation of metallicity gradients around the bar region traces the fluctuations of star formation rate surface density in NGC~1365, NGC~1566 and NGC~1744. A larger sample combined with hydrodynamical simulations is required to further explore the diversity and the relative importance of different ISM mixing mechanisms on the gas-phase metallicity gradients in local galaxies.