Constraints on the magnetic field in the inter-cluster bridge A399-A401
M. Balboni, A. Bonafede, G. Bernardi, D. Wittor, F. Vazza, A. Botteon,, E. Carretti, T. Shimwell, V. Vacca, R. J. van Weeren

TL;DR
This study uses LOFAR observations to constrain the magnetic field strength in the inter-cluster bridge between galaxy clusters A399 and A401, finding it to be greater than 0.46 nG, consistent with simulation predictions.
Contribution
First polarization constraints on the A399-A401 bridge region, providing new limits on magnetic field strength in inter-cluster environments.
Findings
No polarized emission detected in the bridge region.
Magnetic field strength > 0.46 nG in the bridge.
Results align with numerical simulation predictions.
Abstract
Galaxy cluster mergers are natural consequences of the structure formation in the Universe. Such events involve a large amount of energy ( erg) dissipated during the process. Part of this energy can be channelled in particle acceleration and magnetic field amplification, enhancing non-thermal emission of the intra- and inter-cluster environment. Recently, low-frequency observations have detected a bridge of diffuse synchrotron emission connecting two merging galaxy clusters, Abell 399 and Abell 401. Such a result provides clear observational evidence of relativistic particles and magnetic fields in-between clusters. In this work, we have used LOw Frequency ARray (LOFAR) observations at 144 MHz to study for the first time the polarized emission in the A399-A401 bridge region. No polarized emission was detected from the bridge region. Assuming a model where polarization is…
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Taxonomy
TopicsParticle Accelerators and Free-Electron Lasers · Astronomy and Astrophysical Research · Radio Astronomy Observations and Technology
