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首页> 外文期刊>The Astrophysical journal >CONSTRAINTS ON THE COSMIC STRUCTURE FORMATION MODELS FROM EARLY FORMATION OF GIANT GALAXIES
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CONSTRAINTS ON THE COSMIC STRUCTURE FORMATION MODELS FROM EARLY FORMATION OF GIANT GALAXIES

机译:巨型星系早期形成对宇宙结构形成模型的约束

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A recent observation of Steidel and coworkers indicates that a substantial fraction of giant galaxies were formed at an epoch as early as redshift z > 3-3.5. We show that this early formation gives strong constraints on models of cosmic structure formation. Adopting the COBE normalization for the density perturbation spectrum, we argue that the following models do not have large enough power on galactic scales to yield the observed abundance: (1) standard cold dark matter (CDM) models (where mass density Ω_0= 1 and power index n = 1) with the Hubble constant h approx < 0.35; (2) tilted CDM models with h = 0.5 and n approx < 0.75; (3) open CDM models with h approx < 0.8 and Ω_0 approx < 0.3; and (4) mixed dark matter models with h = 0.5 and Ω_v approx > 0.2. Flat CDM models with a cosmological constant λ_0 ~ 0.7 are consistent with the observation, provided that h approx > 0.6. Combined with constraints from large-scale structure formation, these results imply that the flat CDM model with a low Ω_0 is the one fully consistent with observations. We predict that these high-redshift galaxies are more strongly clustered today than normal galaxies.
机译:Steidel及其同事最近的观察表明,早在红移z> 3-3.5时,一个星系就形成了很大一部分星系。我们表明,这种早期形成给宇宙结构形成模型提供了强大的约束。对密度微扰谱采用COBE归一化,我们认为以下模型在银河尺度上的功率不足以产生观测到的丰度:(1)标准冷暗物质(CDM)模型(其中质量密度Ω_0= 1和功率指数n = 1),哈勃常数h约<0.35; (2)h = 0.5且n约<0.75的倾斜CDM模型; (3)打开的CDM模型的h约<0.8和Ω_0约<0.3; (4)h = 0.5和Ω_v约> 0.2的混合暗物质模型。宇宙常数λ_0〜0.7的平坦CDM模型与观察结果一致,只要h约> 0.6。结合大规模结构形成的限制,这些结果表明,具有低Ω_0的平坦CDM模型是与观察结果完全一致的模型。我们预测今天这些高红移星系比正常星系更强地聚集。

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