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首页> 外文期刊>The Astrophysical journal >HEAVY DUST OBSCURATION OF z = 7 GALAXIES IN A COSMOLOGICAL HYDRODYNAMIC SIMULATION
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HEAVY DUST OBSCURATION OF z = 7 GALAXIES IN A COSMOLOGICAL HYDRODYNAMIC SIMULATION

机译:z = 7个星系在宇宙动力学流模拟中的重尘

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Hubble Space Telescope observations with the Wide Field Camera 3/Infrared reveal that galaxies at z ~ 7 have very blue ultraviolet (UV) colors, consistent with these systems being dominated by young stellar populations with moderate or little attenuation by dust. We investigate UV and optical properties of the high-z galaxies in the standard cold dark matter model using a high-resolution adaptive mesh refinement cosmological hydrodynamic simulation. For this purpose, we perform panchromatic three-dimensional dust radiative transfer calculations on 198 galaxies of stellar mass 5 × 108-3 × 1010 M ☉ with three parameters: the dust-to-metal ratio, the extinction curve, and the fraction of directly escaped light from stars (f esc). Our stellar mass function is found to be in broad agreement with Gonzalez et?al., independent of these parameters. We find that our heavily dust-attenuated galaxies (AV ~ 1.8) can also reasonably match modest UV-optical colors, blue UV slopes, as well as UV luminosity functions, provided that a significant fraction (~10%) of light directly escapes from them. The observed UV slope and scatter are better explained with a Small-Magellanic-Cloud-type extinction curve, whereas a Milky-Way-type curve also predicts blue UV colors due to the 2175 ? bump. We expect that upcoming observations by the Atacama Large Millimeter/submillimeter Array will be able to test this heavily obscured model.
机译:哈勃太空望远镜用3 /红外宽视场望远镜观察到的结果表明,z〜7的星系具有非常蓝的紫外线(UV)颜色,这与这些系统被年轻的恒星种群占主导,而尘埃的衰减程度中等或很少。我们使用高分辨率的自适应网格细化宇宙流体力学模拟研究标准冷暗物质模型中高Z星系的紫外线和光学特性。为此,我们对198个恒星质量为5×108-3×1010 M的星系进行全色三维尘埃辐射转移计算,其三个参数为:粉尘金属比,消光曲线和直接比例逃脱了来自恒星的光(f esc)。独立于这些参数,我们的恒星质量函数与Gonzalez et al。被广泛认可。我们发现我们的尘埃衰减严重的星系(AV〜1.8)还可以合理地匹配适度的UV光学颜色,蓝色UV斜率以及UV光度函数,前提是相当一部分(〜10%)的光直接从他们。较小的麦哲伦云类型的消光曲线可以更好地解释观测到的UV斜率和散射,而由于2175?,银河系曲线也可以预测蓝色的UV颜色。磕碰。我们预计,阿塔卡马大型毫米/亚毫米阵列即将进行的观测将能够测试这种高度模糊的模型。

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