paper

XRISM finds the Changing-Look AGN NGC 1365 in an extended low state: A dense, highly ionized outflow obscures the central source

arXiv:2601.00795 · doi:10.3847/2041-8213/ae307d

Abstract

We present the first XRISM/Resolve observations of the active galactic nucleus, NGC 1365, obtained in 2024 February and July. NGC 1365 is known for rapid transitions between Compton-thick and Compton-thin states, along with strong absorption from a highly ionized wind. During our observations, the source is found in a persistent low-flux state, characterized by a decrease in hard-X-ray luminosity and significant line-of-sight obscuration. In this state, XRISM/Resolve reveals clear Fe\,\textsc{xxv} and Fe\,\textsc{xxvi} absorption lines together with, for the first time in this source, corresponding emission lines. These features may arise either from reemission from a photoionized wind (P Cygni profile) or from collisionally ionized gas associated with outflow-driven shocks in the interstellar medium. We estimate the wind launch radius to be approximately (), consistent with the location of the X-ray broad-line region. We also resolve a broadened Fe K line by km s placing it at similar scales to the wind, consistent with radii inferred from disk-broadening models and the variability of the Fe K broad line. The similarity of the Fe K profile to the H wing and broad Pa width indicates that the X-ray-emitting region is likely cospatial with the optical/IR broad-line region and originates from the same gas.