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HIGH-z CONSTRAINTS ON THE COSMIC STRING MODELS WITH HOT DARK MATTER

机译:带有热暗物质的宇宙弦模型的高z约束

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摘要

The number densities of quasars and high-redshift galaxies strictly constrain theories of large-scale structure formation. We compute the comoving space densities of these objects with a cosmic string plus hot dark matter model and compare results with observations. We show that the cosmic string model works considerably better than the standard inflationary hot dark matter theory. We also show that non-Gaussian initial conditions contribute to the number density, and because of this the abundance of objects is higher than expected by the conventional Gaussian Press-Schechter analysis. The cosmic string model with hot dark matter is consistent with the high-redshift observations. However, there might be problems with large-scale structure formation when the power spectrum of strings is compared with the three-dimensional APM spectrum.
机译:类星体和高红移星系的数量密度严格限制了大型结构形成的理论。我们使用宇宙弦加上热暗物质模型来计算这些物体的共同移动空间密度,并将结果与​​观测值进行比较。我们表明,宇宙弦模型比标准的膨胀性热暗物质理论要好得多。我们还表明,非高斯初始条件会影响数字密度,因此,对象的丰度高于常规高斯Press-Schechter分析所期望的。具有高温暗物质的宇宙弦模型与高红移观测结果一致。但是,当将弦的功率谱与三维APM谱进行比较时,可能会出现大规模结构形成的问题。

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