The jet-cloud interacting radio galaxy PKS B2152-699. I. Structures revealed in new deep radio and X-ray observations
D. M. Worrall, M. Birkinshaw, A. J. Young, K. Momtahan, R. A. E., Fosbury, R. Morganti, C. N. Tadhunter, G. Verdoes Kleijn

TL;DR
This study presents deep radio, X-ray, and optical observations of the radio galaxy PKS B2152-699, revealing detailed jet structures, lobe dynamics, and hotspot properties, providing insights into feedback processes and jet energetics.
Contribution
First high-resolution imaging of the jet and comprehensive multi-wavelength analysis, advancing understanding of jet-lobe interactions and feedback in radio galaxies.
Findings
Jet extends ~8.5 kpc with X-ray synchrotron emission.
Lobes show signs of supersonic expansion with Mach 2.2-3.
Hotspots exhibit complex polarization and electron acceleration up to 10^13 eV.
Abstract
PKS B2152-699 has radio power characteristic of sources that dominate radio feedback. We present new deep ATCA, Chandra and optical observations, and test the feedback model. We report the first high-resolution observations of the radio jet. The inner jet extends ~8.5 kpc towards an optical emission-line High Ionization Cloud (HIC) before taking a zig-zag path to an offset position. Jet X-ray synchrotron radiation is seen. The HIC is associated with 0.3 keV X-ray gas of anomalously low metallicity. On larger scales the radio galaxy displays all three X-ray features that together confirm supersonic expansion of the lobes into the external medium: gas cavities, inverse-Compton emission showing excess internal lobe pressure, and high-contrast arms of temperature above the ~1 keV ambient medium. The well-formed S lobe on the counterjet side is expanding with a Mach number 2.2-3. We estimate…
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