paper

Constraining the gamma-ray efficiency of LINER outflows with Fermi-LAT and MEGARA

arXiv:2608.12015

Abstract

Low-Ionization Nuclear Emission-line Regions (LINERs) commonly host ionized gas outflows, but their role as high-energy particle accelerators remains debated, particularly following the very-high-energy -ray detection of NGC 4278, which implied extreme radiative efficiencies. We empirically determine the -ray radiative efficiency of a local sample of LINERs to test whether their high-energy emission can be powered by extended ionized outflows or requires compact nuclear jets. We combine spatially resolved optical integral-field kinematics from the Multi-Espectrógrafo en GTC de Alta Resolución para Astronomía at the Gran Telescopio de Canarias, yielding ionized-outflow kinetic powers, with 17 years of Fermi-Large Area Telescope observations to derive 0.05--500 GeV luminosities or 95% confidence upper limits. We place the sample in an optical/-ray diagram alongside archetypal starbursts and radio galaxies. We present the first empirical upper limits on the -ray radiative efficiency of LINER outflows as a population. No LINER is formally detected (). The strongest constraint is obtained for the radio-loud LINER NGC 1052, with . For the remaining sources, the Fermi-LAT limits generally lie well above the outflow kinetic powers (), while three sources show marginal hints of emission (). We conclude that extended ionized outflows in LINERs are highly inefficient high-energy particle accelerators, analogous to starburst superwinds. These constraints disfavor the outflows as the sole origin of extreme -ray efficiencies and favor compact nuclear jets for the most efficient -ray-emitting LINERs.

Accepted by A&A Letters