Radially polarized synchrotron from galaxy-cluster virial shocks
arXiv:2411.02506 · doi:10.1103/PhysRevD.111.123008
Abstract
Radio-to--ray signals, recently found narrowly confined near the characteristic scaled radii of galaxy clusters and groups, have been associated with their virial (structure-formation accretion) shocks based on spectro-spatial characteristics. By stacking high-latitude GMIMS radio data around MCXC galaxy clusters, we identify (--) excess radially polarized emission at the exact same scaled radius, providing directional support, and indicating tangential magnetic fields induced by the shocked inflow. The results suggest a strong mass dependence, a flat energy spectrum, and a high polarization fraction, consistent with synchrotron emission from electrons accelerated by strong virial shocks. The narrow radial range of such stacked virial-shock signals suggests that although the shocks are theorized to have diverse, irregular morphologies, they share similar minimal radii.
Minor revision; to appear in PRD