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首页> 外文期刊>The Astrophysical journal >A Census of Sub-kiloparsec Resolution Metallicity Gradients in Star-forming Galaxies at Cosmic Noon from HST Slitless Spectroscopy
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A Census of Sub-kiloparsec Resolution Metallicity Gradients in Star-forming Galaxies at Cosmic Noon from HST Slitless Spectroscopy

机译:HST无缺陷光谱法在宇宙中午的星形星系中的亚千柱分辨率金属梯度普查

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We present the hitherto largest sample of gas-phase metallicity radial gradients measured at sub-kpc resolution in star-forming galaxies in the redshift range of z ?∈?[1.2, 2.3]. These measurements are enabled by the synergy of slitless spectroscopy from the Hubble Space Telescope near-infrared channels and the lensing magnification from foreground galaxy clusters. Our sample consists of 76 galaxies with stellar mass ranging from 10~(7) to 10~(10) , an instantaneous star formation rate in the range of [1, 100] yr~(?1), and global metallicity of solar. At a 2σ confidence level, 15/76 galaxies in our sample show negative radial gradients, whereas 7/76 show inverted gradients. Combining ours and all other metallicity gradients obtained at a similar resolution currently available in the literature, we measure a negative mass dependence of Δlog(O/H)/ ?=?(?0.020?± 0.007)?+?(?0.016?±?0.008) , with the intrinsic scatter being σ ?=?0.060?±?0.006 over 4 orders of magnitude in stellar mass. Our result is consistent with strong feedback, not secular processes, being the primary governor of the chemostructural evolution of star-forming galaxies during the disk mass assembly at cosmic noon. We also find that the intrinsic scatter of metallicity gradients increases with decreasing stellar mass and increasing specific star formation rate. This increase in the intrinsic scatter is likely caused by the combined effect of cold-mode gas accretion and merger-induced starbursts, with the latter more predominant in the dwarf mass regime of .
机译:我们介绍了在ZHPC分辨率的亚kPC分辨率下测量的迄今为止最大的气相金属径向梯度样本,在 z的杂交范围内的星形星系中测量?[1.2,2.3]。这些测量由哈勃太空望远镜近红外通道的无缝光谱的协同作用,以及来自前景星系集群的镜头放大倍数。我们的样品由76个星系组成,恒星质量范围为10〜(7)至10〜(10),其瞬时明星形成率在[1,100] Yr〜(?1)的范围内,以及太阳能的全球金属性。在2 Σ置信水平,我们样本中的15/76星系显示出负径向梯度,而7/76显示倒梯度。结合我们的文献中目前可用的类似分辨率获得的所有其他金属性梯度,我们测量ΔLog(O / h)/ = =Δ(?0.020?±0.007)?(?0.016?±0.016? <0.008),内在散射是σα=Δ= 0.060?±0.006在恒星质量中超过4个数量级。我们的结果与强大反馈,而不是世俗的过程,是在宇宙中午的盘质量组装期间星形星系的化学结构演变的主要调速器。我们还发现金属性梯度的内在散射随着恒星质量和增加特定的星形成速率而增加。内在散射的这种增加可能是由冷模式气体增生和合并诱导的星爆来引起的,后者在矮小的质量制度中更为占主导地位。

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