The diffuse radio emission in the high-redshift cluster PSZ2 G091.83+26.11: total intensity and polarisation analysis with Very Large Array 1-4 GHz observations

Abstract

We present the peculiar case of PSZ2G091.83+26.11 at z=0.822. This cluster hosts a Mpc-scale radio halo and an elongated radio source, whose location with the respect to the intracluster medium (ICM) distribution and to the cluster centre is not consistent with a simple merger scenario. We use VLA data at 1-4 GHz to investigate the spectral and polarisation properties of the diffuse radio emission. We combine them with previously published data from LOFAR n the 120-168 MHz band, and from the uGMRT at 250-500 and 550-900 MHz. We also complement the radio data with Chandra X-ray observations to compare the thermal and non-thermal emission of the cluster. The elongated radio emission is visible up to 3.0 GHz and has an integrated spectral index of -1.240.03, with a steepening from -0.890.03 to -1.390.03. These values correspond to Mach numbers M radio,int=3.00.19 and M radio,inj=2.480.15. Chandra data reveals a surface brightness discontinuity at the location of the radio source, with a compression factor of C=2.22+0.39-0.30 (i.e. M Xray=1.93+0.42-0.32). We also find that the source is polarised at GHz frequencies. We estimate an intrinsic polarisation fraction of 0.2, a Rotation Measure of 50~ rad~m-2 (including the Galactic contribution) and an external depolarisation of 60~ rad~m-2. The B-vectors are aligned with the major axis of the source, suggesting magnetic field compression. Hence, we classify this source as a radio relic. We also find a linear/super-linear correlation between the non-thermal and thermal emission. We propose an off-axis merger and/or multiple merger events to explain the position and orientation of the relic. Given the properties of the radio relic, we speculate that PSZ2G091.83+26.11 is in a fairly young merger state.

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