星系外射电源的星系间介质密度和源年龄

E. Chukwuemerie
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引用次数: 2

摘要

在本文中,我们用分析方法和一些合理的假设建立了一个数学模型,该模型可用于估计星系间介质(IGM)的密度。这种关系表明,在我们的样本中,星系外射电源的线性大小与热光度的关系图应该能够为我们提供射电源所在的IGM密度的估计。此外,为了获得与理论模型相似的经验关系,我们对样本中31个射电星系的线性大小和光度进行了线性回归分析。回归结果表明,观测光源线性尺寸与观测辐射热光度之间存在经验关系,相关系数为4。此外,我们比较了理论关系和经验关系,得到了射电源所在IGM粒子数密度的估计。与作者获得的致密陡谱(CSS)源的值相比,估计的密度非常低。然而,当CSS源的线性尺寸为亚星系维度时——它们位于星际介质(ISM)内——那些大型扩展的河外射电源延伸到星系间介质中。这些得到的IGM和ISM密度的惊人差异仅仅支持了IGM - ISM界面密度急剧下降的一般概念。此外,再次利用理论方法,在一些合理的假设下,我们发现了另一种可用于估计河外射电源年龄的关系。这种关系可能表明,我们样本中射电源的射电喷流的线性大小与速度的关系图应该能够为我们提供源年龄的估计。通过简单的线性回归分析,我们发现样本中射电星系的线性尺寸和喷射速度与相关系数的关系为4,这也是边际的。比较这两种关系——理论关系和经验关系——可以估计出射电源的年龄。这个数值表明,这些大的扩展的河外射电源是古老的。
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Intergalactic Media Densities of Extragalactic Radio Sources and Source Ages
In this paper, we use analytical methods with some plausible assumptions to develop a mathematical model which may be used to obtain estimate of density of the intergalactic medium (IGM). This relation suggests that the plot of the linear sizes against the bolometric luminosities of the extragalactic radio sources in our sample should be able to furnish us with an estimate of the density of IGM in which the radio sources are domiciled. Moreover, for the purpose of obtaining an empirical relation similar to the theoretical model, we carry out linear regression analysis of linear sizes and luminosities of the 31 radio galaxies in our sample. The regression result shows an empirical relationship between observed source linear sizes and observed bolometric luminosities with slight correlation whose coefficient is 4. Moreover, we compared the theoretical relation and the empirical relation to obtain an estimate of the particle number density of the IGM in which the radio sources are located. The estimate indicates a very low density when compared with the values obtained by authors for the compact steep spectrum (CSS) sources. However, while the linear sizes of the CSS sources are of sub-galactic dimensions – they are located within the interstellar media (ISM) – those of the large extended extragalactic radio sources extend into the intergalactic media. The staggering difference in these obtained densities of IGM and ISM simply supports the general notion that there is a sharp decrease in the density at the IGM–ISM interface. Moreover, using theoretical approach again, with some plausible assumptions, we find another relation which may be used to estimate the ages of extragalactic radio sources. This relation possibly indicates that the plot of the linear sizes against velocities of the radio jets of the radio sources in our sample should be able to supply us with an estimate of the sources’ ages. We find from the simple linear regression analysis of linear sizes and jet velocities of the radio galaxies in our sample, a relation with correlation coefficient given as 4, which is also marginal. Comparison of the two relations – theoretical and the empirical relations – gives an estimate of age of the radio sources. The value shows that these large extended extragalactic radio sources are old sources.
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