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Spectral ageing in the lobes of FR-II radio galaxies: new methods of analysis for broad-band radio data

机译:FR-II无线电星系波瓣的光谱老化:宽带无线电数据的新分析方法

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摘要

The broad-bandwidth capabilities of next generation telescopes such as the Jansky Very Large Array (JVLA) mean that the spectrum of any given source varies significantly within the bandwidth of any given observation. Detailed spectral analysis taking this variation into account is set to become standard practice when dealing with any new broad-band radio observations; it is therefore vital that methods are developed to handle this new type of data. In this paper, we present the Broadband Radio Astronomy ToolS (brats) software package and, use it to carry out detailed analysis of JVLA observations of three powerful radio galaxies. We compare two of the most widely used models of spectral ageing, the Kardashev–Pacholczyk and Jaffe–Perola models and also results of the more complex, but potentially more realistic, Tribble model. We find that the Tribble model provides both a good fit to observations as well as providing a physically realistic description of the source. We present the first high-resolution spectral maps of our sources and find that the best-fitting injection indices across all models take higher values than have previously been assumed. We present characteristic hotspot advance speeds and make comparison to those derived from dynamical ages, confirming the previously known discrepancy in speed remains present when determined at high spectral resolutions. We show that some previously common assumptions made in determining spectral ages with narrow-band radio telescopes may not always hold and strongly suggest that these are accounted for in future investigations.
机译:诸如Jansky超大型阵列(JVLA)之类的下一代望远镜的宽带功能意味着任何给定源的光谱在任何给定观测的带宽内都会发生显着变化。考虑到这种变化的详细频谱分析将成为处理任何新的宽带无线电观测时的标准实践;因此,至关重要的是要开发出处理这种新型数据的方法。在本文中,我们介绍了宽带射电天文学工具(小子)软件包,并使用它来对三个强大射电星系的JVLA观测进行详细分析。我们比较了两个最广泛使用的光谱老化模型,即Kardashev–Pacholczyk和Jaffe–Perola模型,以及更复杂但可能更现实的Tribble模型的结果。我们发现Tribble模型不仅提供了对观测的良好拟合,还提供了对源的物理逼真的描述。我们展示了我们来源的第一个高分辨率光谱图,发现所有模型中最合适的进样指数都比以前假设的值更高。我们提出了特征性的热点前进速度,并与动态年龄得出的结果进行了比较,确认了在高光谱分辨率下确定时仍存在先前已知的速度差异。我们表明,在使用窄带射电望远镜确定光谱年龄方面做出的一些先前的普遍假设可能并不总是成立,并强烈建议在以后的研究中考虑这些假设。

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