Search and analysis of giant radio galaxies with associated nuclei (SAGAN)

IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
P. Dabhade, K. Chavan, D. J. Saikia, M. S. S. L. Oei, H. J. A. Röttgering
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Abstract

To test the hypothesis that megaparsec-scale giant radio galaxies (GRGs) experience multiple epochs of recurrent activity leading to their giant sizes and to understand the nature of double-double radio galaxies (DDRGs), we have built the largest sample of giant DDRGs from the LOFAR Two Metre Sky Survey (LoTSS) data release 2. This sample comprises 111 sources, including 76 newly identified DDRGs, with redshifts ranging from 0.06 to 1.6 and projected sizes between 0.7 Mpc and 3.3 Mpc. We conducted a detailed analysis to characterise their properties, including arm-length ratios, flux density ratios of pairs of lobes, and misalignment angles. These measurements allow us to study the symmetry parameters, which are influenced by the immediate and large-scale environments of DDRGs. Our study shows that based on the observed asymmetries of the inner lobes, the cocoons in which the inner lobes of DDRGs grow are often (approximately about 26%) asymmetrically contaminated with surrounding material from the external medium. Our analysis also reveals highly misaligned DDRGs, which could be due to environmental factors and/or changes in the supermassive black hole jet ejection axes. By studying the misalignment angles, we assess the stability of the jets in these systems in relation to their environment. For the first time, we systematically characterised the large-scale environments of DDRGs, identifying their association with dense galaxy clusters and revealing the influence of ‘cluster weather’ on their morphologies. We have discovered a DDRG in a distant galaxy cluster at z ∼ 1.4. Our findings empirically confirm that dynamic cluster environments can induce significant misalignment in DDRGs, which aligns with previous simulation predictions and offers insights into how cluster weather shapes their morphology. Additionally, we have identified two gigahertz peaked-spectrum (GPS) candidates in the unresolved cores of the DDRGs, as well as one triple-double candidate, which, if confirmed, would be only the fifth known case. Overall, this study enhances our understanding of the life cycle of radio AGNs and underscores the critical role of the environment in shaping the properties and evolution of giant DDRGs.
带伴生核的巨型射电星系(SAGAN)的搜索与分析
为了验证百万秒差距规模的巨型射电星系(grg)经历了多个周期的周期性活动导致其巨大的假设,并了解双双射电星系(ddrg)的本质,我们从LOFAR两米巡天(LoTSS)数据发布2中构建了最大的巨型ddrg样本。该样本包括111个来源,包括76个新发现的ddrg,红移范围为0.06至1.6,预计大小为0.7至3.3 Mpc。我们进行了详细的分析,以表征它们的特性,包括臂长比、对叶的通量密度比和不对准角。这些测量使我们能够研究对称参数,这些参数受DDRGs的直接和大规模环境的影响。我们的研究表明,根据观察到的内叶的不对称性,ddrg内叶生长的茧经常(约26%)被外部介质的周围物质不对称污染。我们的分析还揭示了高度错位的ddrg,这可能是由于环境因素和/或超大质量黑洞喷射轴的变化。通过研究不对准角,我们评估了这些系统中射流相对于环境的稳定性。我们首次系统地描述了DDRGs的大尺度环境,确定了它们与密集星系团的关联,并揭示了“星系团天气”对它们形态的影响。我们在z ~ 1.4的遥远星系团中发现了一个DDRG。我们的研究结果从经验上证实了动态集群环境会导致ddrg出现明显的偏差,这与之前的模拟预测一致,并为集群天气如何影响其形态提供了见解。此外,我们已经在DDRGs未解决的核心中确定了两个千兆赫的峰值频谱(GPS)候选者,以及一个三双候选者,如果得到证实,这将是已知的第五个案例。总的来说,这项研究增强了我们对无线电agn生命周期的理解,并强调了环境在塑造巨型ddrg的特性和演化中的关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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