Abell 0399–Abell 0401 radio bridge spectral index: First multi-frequency detection

IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
G. V. Pignataro, A. Bonafede, G. Bernardi, F. de Gasperin, G. Brunetti, T. Pasini, F. Vazza, N. Biava, J. M. G. H. J. de Jong, R. Cassano, A. Botteon, M. Brüggen, H. J. A. Röttgering, R. J. van Weeren, T. W. Shimwell
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引用次数: 0

Abstract

Aims. Recent low-frequency radio observations at 140 MHz discovered a bridge of diffuse emission with a length of 3 Mpc that connects the galaxy clusters Abell 0399 and Abell 0401. We present follow-up observations at 60 MHz to constrain the spectral index of the bridge, which has only been detected at 140 and 144 MHz so far.Methods. We analysed deep (∼18 h) LOw Frequency ARray (LOFAR) Low Band Antenna (LBA) data at 60 MHz to detect the bridge at very low frequencies. We then conducted a multi-frequency study with LOFAR HBA data at 144 MHz and uGMRT data at 400 MHz. Assuming second-order Fermi mechanisms for the re-acceleration of relativistic electrons driven by turbulence in the radio bridge regions, we compared the observed radio spectrum with theoretical synchrotron models.Results. The bridge is detected in the 75″ resolution LOFAR image at 60 MHz, and its emission fully connects the region between the two galaxy clusters. Between 60 MHz and 144 MHz, we found an integrated spectral index value of for the bridge emission. For the first time, we produced spectral index and related uncertainties maps for a radio bridge. We produce a radio spectrum that shows a significant steepening between 144 and 400 MHz.Conclusions. This detection at low frequencies provides important information for models of particle acceleration and magnetic field structure on very extended scales. The spectral index gives important clues about the origin of inter-cluster diffuse emission. The steepening of the spectrum above 144 MHz can be explained in a turbulent re-acceleration framework, assuming that the acceleration timescales are longer than ∼200 Myr.
Abell 0399-Abell 0401射电桥光谱指数:首次多频率探测
目的最近的140 MHz低频射电观测发现了一个长度为3 Mpc的漫射桥,它连接着星系团Abell 0399和Abell 0401。我们用 60 MHz 进行了后续观测,以确定该桥的光谱指数。我们分析了60 MHz的低频雷达(LOFAR)低频天线(LBA)深度(∼18 h)数据,以探测到极低频率的天桥。然后,我们利用 144 MHz 的 LOFAR HBA 数据和 400 MHz 的 uGMRT 数据进行了多频研究。假定射电桥区域湍流驱动相对论电子再加速的二阶费米机制,我们将观测到的射电频谱与同步辐射理论模型进行了比较。在分辨率为 75″ 的 LOFAR 60 MHz 图像中探测到了射电桥,它的发射完全连接了两个星系团之间的区域。在60兆赫和144兆赫之间,我们发现桥辐射的综合光谱指数值为。我们首次绘制了射电桥的光谱指数和相关不确定性图。我们绘制的无线电频谱在 144 和 400 MHz 之间显示出明显的陡峭化。这一低频探测为粒子加速模型和非常扩展尺度的磁场结构提供了重要信息。光谱指数提供了有关星团间漫射起源的重要线索。在湍流再加速框架下,假设加速时间尺度长于∼200 Myr,144 MHz以上的频谱陡变可以得到解释。
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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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