4.6 Article

Abell 1033: Radio halo and gently reenergized tail at 54 MHz

期刊

ASTRONOMY & ASTROPHYSICS
卷 666, 期 -, 页码 -

出版社

EDP SCIENCES S A
DOI: 10.1051/0004-6361/202243737

关键词

galaxies: clusters: individual: Abell 1033; radio continuum: general; X-rays: galaxies: clusters; methods: observational

资金

  1. CNRS-INSU
  2. Observatoire de Paris and Universite d'Orleans, France
  3. BMBF, Germany
  4. MIWF-NRW, Germany
  5. MPG, Germany
  6. Science Foundation Ireland (SFI)
  7. Department of Business, Enterprise and Innovation (DBEI), Ireland
  8. NWO, The Netherlands
  9. Science and Technology Facilities Council, UK
  10. Ministry of Science and Higher Education, Poland
  11. Istituto Nazionale di Astrofisica (INAF), Italy
  12. SURF Cooperative (e-infra 180169)
  13. NWO [2019.056]
  14. Gauss Centre for Supercomputing e.V. [CHTB00]
  15. STFC [ST/P000096/1]
  16. Physics Department of Turin university (under an agreement with Consorzio Interuniversitario per la Fisica Spaziale)
  17. EU funded DICE project (H2020-INFRAEOSC-20182020) [101017207]
  18. Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) [427771150]
  19. Deutsche Forschungsgemeinschaft under Germany's excellence strategy -EXEC2121 Quantum Universe [390833306]
  20. Alexander von Humboldt Foundation
  21. ERC Starting Grant ClusterWeb 804208
  22. VIDI research program [639.042.729]
  23. Netherlands Organisation for Scientific Research (NWO)
  24. ERCStG DRANOEL [714245]
  25. BMBF Verbundforschung [05A20STA]

向作者/读者索取更多资源

The study focuses on different radio sources in the galaxy cluster Abell 1033, revealing features with an ultra-steep spectrum and investigating a radio halo. The results show a cutoff in the electron energy spectrum at low frequencies and a further steepening of the synchrotron spectrum of the halo.
Context. Abell 1033 is a merging galaxy cluster of moderate mass (M-500 = 3.24 x 10(14) M-circle dot). It hosts a broad variety of diffuse radio sources that are linked to different astrophysical phenomena. The most peculiar phenomenon is an elongated feature with an ultra-steep spectrum that is the prototype of the category of gently reenergized tails (GReET). Furthermore, the cluster hosts sources that were previously classified as a radio phoenix and a radio halo. Aims. We aim to improve the understanding of the cosmic-ray acceleration mechanisms in galaxy clusters in a frequency and mass range that has been poorly explored so far. Methods. To investigate the ultra-steep synchrotron emission in the cluster, we performed a full direction-dependent calibration of a LOFAR observation centered at 54 MHz. We analyzed this observation together with recalibrated data of the LOFAR Two-meter Sky Survey at 144 MHz and an archival GMRT observation at 323 MHz. We performed a spectral study of the radio galaxy tail that is connected to the GReET to test whether the current interpretation of the source agrees with observational evidence below 100 MHz. Additionally, we employed a Markov chain Monte Carlo code to fit the halo surface brightness profile at different frequencies. Results. We report an extreme spectral curvature for the GReET. The spectral index flattens from alpha(323MHz)(144MHz) approximate to -4 to alpha(144MHz)(54MHz) approximate to -2. This indicates the presence of a cutoff in the electron energy spectrum. At the cluster center, we detect the radio halo at 54, 144, and at lower significance at 323 MHz. We categorize it as an ultra-steep spectrum radio halo with a low-frequency spectral index alpha = -1.65 +/- 0.17. Additionally, with a radio power of P-150MHz = 1.22 +/- 0.13 x 10(25) W Hz(-1), it is found to be significantly above the correlations of radio power to cluster mass reported in the literature. Furthermore, the synchrotron spectrum of the halo is found to further steepen between 144 and 323 MHz, in agreement with the presence of a break in the electron spectrum, which is a prediction of homogeneous reacceleration models.

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