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TESTING THE HUBBLE LAW WITH THE IRAS 1.2 Jy REDSHIFT SURVEY

机译:使用IRAS 1.2 Jy REDSHIFT调查测试下的律法

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摘要

We test and reject the claim of Segal and coworkers that the correlation of redshifts and flux densities in a complete sample of IRAS galaxies favors a quadratic redshift-distance relation over the linear Hubble law. This is done, in effect, by treating the entire galaxy luminosity function as derived from the 60 μm 1.2 Jy IRAS redshift survey of Fisher et al. as a distance indicator; equivalently, we compare the flux density distribution of galaxies as a function of redshift with predictions under different redshift-distance cosmologies, under the assumption of a universal luminosity function. This method does not assume a uniform distribution of galaxies in space. We find that this test has rather weak discriminatory power, as argued by Petrosian, and the differences between models are not as stark as one might expect a priori. Even so, we find that the Hubble law is indeed more strongly supported by the analysis than is the quadratic redshift-distance relation. We identify a bias in the Segal et al. determination of the luminosity function, which could lead one to mistakenly favor the quadratic redshift-distance law. We also present several complementary analyses of the density field of the sample; the galaxy density field is found to be close to homogeneous on large scales if the Hubble law is assumed, while this is not the case with the quadratic redshift-distance relation.
机译:我们测试并拒绝了Segal和他的同事关于完整IRAS星系样本中红移和通量密度相关性的主张,而不是线性哈勃定律更倾向于二次红移距离关系。实际上,这是通过处理从Fisher等人的60μm1.2 Jy IRAS红移调查得出的整个星系光度函数来完成的。作为距离指示器;等效地,在通用发光度函数的假设下,我们将银河系的通量密度分布作为红移的函数与在不同红移距离宇宙学下的预测进行比较。该方法不假定星系在空间中的均匀分布。正如Petrosian所言,我们发现该检验的判别力相当弱,模型之间的差异并不像人​​们期望的那样那么明显。即使这样,我们发现哈伯定律确实比二次红移-距离关系更受分析的支持。我们在Segal等人中发现了偏见。确定光度函数,这可能会导致人们错误地偏爱二次红移距离定律。我们还对样品的密度场进行了一些补充分析。如果假设哈勃定律,则发现银河系密度场在大尺度上接近于均匀,而对于二次红移-距离关系则不是这种情况。

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