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首页> 外文期刊>Australian Journal of Physics >Redshift and Luminosity Dependence of Linear Sizes of Compact Steep Spectrum Sources and the Quasar/Galaxy Unification Scheme
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Redshift and Luminosity Dependence of Linear Sizes of Compact Steep Spectrum Sources and the Quasar/Galaxy Unification Scheme

机译:紧凑陡峭光谱源的线性尺寸的红移和光度依赖性以及类星体/星系统一方案

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摘要

We present and analyse plots of linear size-luminosity and linear size-redshift data for a sample of compact steep-spectrum sources (CSSs) and use them to investigate the currently popular but controversial orientation-based unification hypothesis for high-luminosity radio sources. This is based on the assumption that CSSs belong to a separate class of object. Our results show that the observed distributions of linear size (D) as a Function of redshift (z) and radio luminosity (P) are in accord with the unified scheme in which CSS radio galaxies and CSS quasars are expected to be indistinguishable in their D-P/z correlations. This is particularly true when the two classes of object are properly matched in redshift. In the unification paradigm, both radio galaxies and quasars are expected to differ only in their orientation-dependent properties; all other properties should appear similar.
机译:我们为紧凑型陡峭频谱源(CSS)的样本呈现和分析线性大小-亮度和线性大小-红移数据的图,并使用它们来研究当前流行的但有争议的基于方向的高亮度无线电源统一假设。这是基于CSS属于单独对象类别的假设。我们的结果表明,观测到的线性大小(D)作为红移(z)和射电发光度(P)的函数与统一方案一致,在该方案中,预期CSS射电星系和CSS类星体在其DP中无法区分/ z相关性。当两类对象在红移中正确匹配时,尤其如此。在统一范式中,射电星系和类星体都仅在其取向相关的特性上有所不同。所有其他属性应看起来相似。

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