论文标题

Murchison Widefield阵列检测Abell 1127中的陡峭光谱,扩散,非热无线电发射

Murchison Widefield Array detection of steep-spectrum, diffuse, non-thermal radio emission within Abell 1127

论文作者

Duchesne, Stefan W., Johnston-Hollitt, Melanie, Zhu, Zhenghao, Wayth, Randall B., Line, Jack L. B.

论文摘要

在低频无线电调查和图像中,越来越多地检测到星系簇中的弥漫性非热发射。我们提出了一个新的漫射,陡峭的,陡峭的,非热的无线电源,内部的Abell 1127中发现了来自Murchison Widefield阵列(MWA)的调查数据中。我们对“扩展”配置MWA II期进行后续观察,并改进了分辨率,以更好地解析源并测量其低频光谱特性。我们使用档案非常大的阵列S波段数据来删除MWA数据中的离散源贡献,并且从Power Law模型拟合中我们找到了$ -1.83 \ pm0.29 $的频谱索引与Relic-type源广泛一致。该来源是由150 MHz的巨型Metrewave射电望远镜(GMRT)揭示的,具有伸长的形态,如MWA数据中测量的线性大小为850 kpc。使用Chandra观察,我们得出形态估计器,并定量确认该簇处于干扰的动力状态,与大多数通过合并簇托管的凤凰和文物一致。我们讨论了仅依靠形态学和低分辨率成像来分类此类来源的含义,并突出MHz对GHz无线电频谱的有用性在对这些类型的发射分类中的有用性。最后,我们讨论了将MWA II期与其他工具结合使用的好处和局限性,以详细研究Galaxy簇内的弥漫性,陡峭的,非热的无线电发射。

Diffuse, non-thermal emission in galaxy clusters is increasingly being detected in low-frequency radio surveys and images. We present a new diffuse, steep-spectrum, non-thermal radio source within the cluster Abell 1127 found in survey data from the Murchison Widefield Array (MWA). We perform follow-up observations with the 'extended' configuration MWA Phase II with improved resolution to better resolve the source and measure its low-frequency spectral properties. We use archival Very Large Array S-band data to remove the discrete source contribution from the MWA data, and from a power law model fit we find a spectral index of $-1.83\pm0.29$ broadly consistent with relic-type sources. The source is revealed by the Giant Metrewave Radio Telescope (GMRT) at 150 MHz to have an elongated morphology, with a projected linear size of 850 kpc as measured in the MWA data. Using Chandra observations we derive morphological estimators and confirm quantitatively that the cluster is in a disturbed dynamical state, consistent with the majority of phoenices and relics being hosted by merging clusters. We discuss the implications of relying on morphology and low-resolution imaging alone for the classification of such sources and highlight the usefulness of the MHz to GHz radio spectrum in classifying these types of emission. Finally, we discuss the benefits and limitations of using the MWA Phase II in conjunction with other instruments for detailed studies of diffuse, steep-spectrum, non-thermal radio emission within galaxy clusters.

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