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A discrepancy observed in the dipole anisotropy in the radio sky at 1.4 GHz and that in the CMBR - A threat to the cosmological principle?

机译:在1.4 GHz的偶极天线中偶像各向异性观察到的差异,在CMBR中 - 对宇宙学原理的威胁?

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According to the cosmological principle, the sky brightness at any frequency should appear uniform in all directions to an observer considered to be fixed in the co-moving coordinate system of the expanding universe. However a peculiar motion of the observer introduces a dipole anisotropy in the observed sky brightness, which should be independent of the observing frequency. We have examined the angular distribution in the radio-sky brightness, i.e., an integrated emission from discrete sources per unit solid angle, from the NVSS sample containing 1.8 million discrete radio sources at 1.4 GHz. Our results give a dipole anisotropy which is in the same direction as that of the CMBR from the COBE or WMAP, but the magnitude we find is about 4 times larger at a statistically significant (about 3σ) level. A genuine difierence between the two dipoles cannot arise from the observer's motion alone, and it would imply intrinsically anisotropic universe, with anisotropy changing with the epoch. This would violate the cosmological principle where isotropy of the universe is assumed for all epochs, and on which the whole modern cosmology is based upon.
机译:根据宇宙学原理,任何频率的天空亮度应在所有方向上出现均匀,观察者被认为是固定在扩展宇宙的共移动坐标系中的观察者。然而,观察者的特殊运动在观察到的天空亮度中引入了偶极各向异性,这应该与观察频率无关。我们已经研究了无线电天空亮度的角度分布,即,从每个单位固体角度的离散光源的集成发射,来自含有1.4GHz的180万个离散无线电源的NVSS样本。我们的结果给出了偶极各向异性,与COBE或WMAP的CMBR相同,但我们发现的大小在统计上显着(约3σ)水平大约为4倍。两个偶极子之间的真正差异不能单独地从观察者的运动中出现,它将意味着本质上各向异性宇宙,各向异性与时期改变。这将违反宇宙学原则,宇宙的各向同性被所有时期都假设,以及整个现代宇宙学的基础。

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