On the multiwavelength properties of several {\gamma}-ray detected narrow-line Seyfert 1 galaxies
Hui Yang, Weimin Yuan, Su Yao, Hai-Wu Pan, S. Komossa

TL;DR
This paper reviews multiwavelength observations of gamma-ray detected narrow-line Seyfert 1 galaxies, highlighting their jet properties, variability, and implications for understanding AGN physics.
Contribution
It provides a comprehensive summary of detections and follow-up studies of three gamma-ray-emitting NLS1s, expanding the sample for statistical analysis.
Findings
Detection of gamma-ray flaring activity in NLS1s
Multiwavelength variability observed across radio to gamma-ray bands
Implications for jet physics in low-mass black hole AGNs
Abstract
The {\gamma}-ray detection from several radio-loud (RL) narrow-line Seyfert 1 (NLS1) galaxies has enabled us to study powerful relativistic jets in active galactic nuclei (AGNs) with smaller black hole masses and higher accretion rates than classical blazars. However, the sample of those {\gamma}-ray detected NLS1s available is still not large enough for a comprehensive and statistical study. We provide a summary of our detections and follow-up studies of three {\gamma}-ray-emitting NLS1s: SDSS J211852.96-073227.5 with flaring {\gamma}-ray radiation (Yang et al. 2018, Paliya et al. 2018) and SDSS J122222.55+041315.7 with the highest redshift by far (z~1) (Yao et al. 2015a), along with the prototype 1H 0323+342 (Zhou et al. 2007, Yao et al. 2015b). And we will discuss their multiwavelength properties and variability properties, including implications from high-energy observations in…
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Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Particle Accelerators and Free-Electron Lasers · Particle Detector Development and Performance
