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首页> 外文期刊>The Astrophysical Journal. Letters >DUST FORMATION, EVOLUTION, AND OBSCURATION EFFECTS IN THE VERY HIGH-REDSHIFT UNIVERSE
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DUST FORMATION, EVOLUTION, AND OBSCURATION EFFECTS IN THE VERY HIGH-REDSHIFT UNIVERSE

机译:非常红尘宇宙中的尘埃形成,演化和阻塞效应

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The evolution of dust at redshifts z ≥ 9, and consequently the dust properties, differs greatly from that in the local universe. In contrast to the local universe, core collapse supernovae (CCSNe) are the only source of thermally condensed dust. Because of the low initial dust-to-gas mass ratio, grain destruction rates are low, so that CCSNe are net producers of interstellar dust. Galaxies with large initial gas mass or high mass infall rate will therefore have a more rapid net rate of dust production compared to galaxies with lower gas mass, even at the same star formation rate. The dust composition is dominated by silicates, which exhibit a strong rise in the UV opacity near the Lyman break. This “silicate-UV break” may be confused with the Lyman break, resulting in a misidentification of a galaxy’s photometric redshift. In this Letter we demonstrate these effects by analyzing the spectral energy distribution of MACS1149-JD, a lensed galaxy at z = 9.6. A potential 2 mm counterpart of MACS1149-JD has been identified with GISMO. While additional observations are required to corroborate this identification, we use this possible association to illustrate the physical processes and the observational effects of dust in the very high-redshift universe.
机译:当红移z≥9时,尘埃的演变与尘埃特性的变化与当地宇宙的变化很大。与局部宇宙相反,核心坍缩超新星(CCSNe)是热凝尘的唯一来源。由于初始粉尘/气体质量比低,谷物破坏率低,因此CCSNe是星际粉尘的净生产者。因此,与具有较低气体质量的星系相比,即使在相同的恒星形成速率下,具有较大初始气体质量或高质量下降率的星系也将具有更快的净粉尘产生速率。灰尘成分主要由硅酸盐组成,硅酸盐在莱曼断裂附近的紫外线不透明度显着提高。这种“硅酸盐-紫外线破裂”可能与莱曼破裂相混淆,导致误认了星系的光度红移。在这封信中,我们通过分析z = 9.6的透镜星系MACS1149-JD的光谱能量分布来证明这些效应。 GISMO已发现MACS1149-JD的潜在2毫米对应物。虽然需要更多的观测来证实这一识别,但我们使用这种可能的关联来说明极高红移宇宙中尘埃的物理过程和观测效应。

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