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Relativistic outflows power a quasi-periodic eruption: constraints on energetics, mass loss, and emission mechanisms

Published 28 Aug 2026 in astro-ph.HE and astro-ph.GA | (2608.28507v1)

Abstract: Quasi-periodic eruptions (QPEs) are recurring bursts of X-ray radiation originating from supermassive black holes (SMBHs). They are an unprecedented type of structured, high-amplitude SMBH variability, but the physical origins of their regularity, timescales, energetics, and emission are uncertain. We present new XMM-Newton observations of the QPEs in ZTF19acnskyy/``Ansky'', constituting the deepest observations of individual bursts in any source thus far. The X-ray spectra reveal time-evolving P Cygni profiles comprising blueshifted absorption and redshifted emission from L-shell transitions of Fe XIX-XXIV, with column densities NH10<sup>2223N_H\sim 10<sup>{22-23} cm<sup>2<sup>{-2} and bulk velocities of vw/c0.2|v_w/c|\sim 0.2, indicating relativistic mass ejections during each eruption. We construct a time-dependent analytical model of a wind turning on to self-consistently compute its evolving luminosity and ionization properties, and find that the light curve and spectral lines can be simultaneously produced by a wide-angle outflow with M˙10<sup>910<sup>8M\dot{M}\sim 10<sup>{-9}-10<sup>{-8}\,M_\odot s<sup>1<sup>{-1} kinetically powering the X-rays with an efficiency of LX/E˙<em>K0.1L_X/\dot{E}<em>K\sim 0.1. Each eruption ejects 10<sup>3M</sup></em>\sim 10<sup>{-3}\,M</sup></em>\odot and 10<sup>49\gtrsim 10<sup>{49} erg of kinetic energy, setting an upper bound on the QPE lifetime of 30\lesssim30 years if the underlying mass reservoir is 1M\sim1 M_\odot, and implying that the bursts may result in detectable multiwavelength signatures of reverberation and feedback. These measurements provide new quantitative constraints on QPE energetics, emission mechanisms, and the mass/energy they recycle into their circumnuclear environments, as well as an observational probe for direct comparison with physical models and hydrodynamical simulations of QPEs.

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