Projected sensitivity of CTAO to axion-like particles from blazars with a machine learning approach
arXiv:2512.19259 · doi:10.1140/epjc/s10052-026-15910-x
Abstract
Blazars are a class of active galactic nuclei, supermassive black holes located at the centres of distant galaxies characterised by strong emission across the entire electromagnetic spectrum, from radio waves to gamma rays. Their relativistic jets, closely aligned to the line of sight from Earth, are a rich and complex environment, characterised by the presence of strong magnetic fields over parsec-scale lengths. Owing to their cosmological distance from Earth, these sources serve as ideal targets to probe non-standard gamma-ray propagation. In particular, axion-like particles (ALPs) could be detected through their coupling to photons, which enables ALP-photon conversions in external magnetic fields, leading to distinct signatures in the blazars' gamma-ray spectra. In this work, we estimate the potential of the Cherenkov Telescope Array Observatory (CTAO) to constrain the ALP parameter space by simulating observations of two bright blazars, Mrk 501 and PKS 2155304. We obtain projected exclusion regions, demonstrating that CTAO will be able to consistently improve present limits thanks to its greater energy resolution and point-source sensitivity with respect to present ground-based gamma-ray telescopes. In addition to the standard statistical technique based on the likelihood ratio test, we further demonstrate the application of a new method based on machine learning classifiers, which may help in reducing the effect of systematic model-dependent uncertainties in future ALP searches.
Accepted for publication in EPJC
References in corpus (32)
- Active Galactic Nuclei: what's in a name?
- Incremental Fermi Large Area Telescope Fourth Source Catalog
- Fermi Large Area Telescope Bright Gamma-ray Source List
- Evidence for a new light spin-zero boson from cosmological gamma-ray propagation?
- Physics potential of the International Axion Observatory (IAXO)
- Implementation of the Random Forest Method for the Imaging Atmospheric Cherenkov Telescope MAGIC
- Detecting Axion-Like Particles With Gamma Ray Telescopes
- Gamma-Hadron Separation in Very-High-Energy gamma-ray astronomy using a multivariate analysis method
- An observational determination of the evolving extragalactic background light from the multiwavelength HST/CANDELS survey in the Fermi and CTA era
- Sensitivity of the Cherenkov Telescope Array to a dark matter signal from the Galactic centre
- Signatures of axion-like particles in the spectra of TeV gamma-ray sources
- Gammapy: A Python package for gamma-ray astronomy
- Axion-Like Particles, Cosmic Magnetic Fields and Gamma-Ray Astrophysics
- Sensitivity of the Cherenkov Telescope Array for probing cosmology and fundamental physics with gamma-ray propagation
- Leptonic and Hadronic Radiative Processes in Supermassive-Black-Hole Jets
- On detecting oscillations of gamma rays into axion-like particles in turbulent and coherent magnetic fields
- Synchrotron and inverse-Compton emission from blazar jets I: a uniform conical jet model
- Searches for the BSM scenarios at the LHC using decision tree based machine learning algorithms: A comparative study and review of Random Forest, Adaboost, XGboost and LightGBM frameworks
- A new upper limit on the axion-photon coupling with an extended CAST run with a Xe-based Micromegas detector
- Sensitivity of the Cherenkov Telescope Array to the detection of axion-like particles at high gamma-ray opacities
- Supernova axions convert to gamma-rays in magnetic fields of progenitor stars
- Axion-like Particles Implications for High-Energy Astrophysics
- Detection of the Crab Nebula with the 9.7 m Prototype Schwarzschild-Couder Telescope
- Relevance of jet magnetic field structure for blazar axionlike particle searches
- Constraints on axionlike particles from a combined analysis of three flaring flat-spectrum radio quasars
- Constraints on axion-like particles with the Perseus Galaxy Cluster with MAGIC
- Dark Matter Line Searches with the Cherenkov Telescope Array
- Sensitivity of the Cherenkov Telescope Array to TeV photon emission from the Large Magellanic Cloud
- Classification of the \emph{Fermi}-LAT Blazar Candidates of Uncertain type using eXtreme Gradient Boosting
- Axion-Like Particle Searches with IACTs
- Axion-like Particle Effects on Photon Polarization in High-Energy Astrophysics
- VHE -ray observations of bright BL Lacs with the Large-Sized Telescope prototype (LST-1) of the CTAO