Simultaneously unveiling the EBL and intrinsic spectral parameters of gamma-ray sources with Hamiltonian Monte Carlo
arXiv:2311.05026 · doi:10.1088/1475-7516/2024/03/020
Abstract
The Extragalactic Background Light (EBL) is the main radiation field responsible for attenuating extragalactic gamma-ray emission at very high energies, but its precise spectral intensity is not fully determined. Therefore, disentangling propagation effects from the intrinsic spectral properties of gamma-ray sources (such as active galactic nuclei, AGN) is the primary challenge to interpreting observations of these objects. We present a Bayesian and Markov Chain Monte Carlo approach to simultaneously infer parameters characterizing the EBL and the intrinsic spectra in a combined fit of a set of sources, which has the advantage of easily incorporating the uncertainties of both sets of parameters into one another through marginalization of the posterior distribution. Taking a sample of synthetic blazars observed by the ideal CTA configuration, we study the effects on the EBL constraints of combining multiple observations and varying their exposure. We also apply the methodology to a set of 65 gamma-ray spectra of 36 different AGNs measured by current Imaging Atmospheric Cherenkov Telescopes, using Hamiltonian Monte Carlo as a solution to the difficult task of sampling in spaces with a high number of parameters. We find robust constraints in the mid-IR region while simultaneously obtaining intrinsic spectral parameters for all of these objects. In particular, we identify Markarian 501 (Mkn 501) flare data (HEGRA/1997) as essential for constraining the EBL above 30m.
41 pages, 19 figures; added information in section 2.2
References in corpus (25)
- Observations of the Crab Nebula with H.E.S.S
- The major upgrade of the MAGIC telescopes, Part II: A performance study using observations of the Crab Nebula
- Very-High-Energy Gamma Rays from a Distant Quasar: How Transparent Is the Universe?
- MAGIC discovery of VHE Emission from the FSRQ PKS 1222+21
- Fast variability of TeV gamma-rays from the radio galaxy M 87
- New constraints on the Mid-IR EBL from the HESS discovery of VHE gamma rays from 1ES 0229+200
- New limits on the density of the extragalactic background light in the optical to the far-infrared from the spectra of all known TeV blazars
- Black hole lightning due to particle acceleration at subhorizon scales
- Observations of Mkn 421 with the MAGIC Telescope
- Discovery of Very High Energy gamma-rays from 1ES 1011+496 at z=0.212
- Discovery of VHE gamma-rays from the distant BL Lac 1ES 0347-121
- Observation of gamma-ray emission from the galaxy M87 above 250 GeV with VERITAS
- Simultaneous multiwavelength observations of the blazar 1ES1959+650 at a low TeV flux
- GammaLib and ctools: A software framework for the analysis of astronomical gamma-ray data
- Anomalous Flux in the Cosmic Optical Background Detected With New Horizons Observations
- Discovery of VHE gamma-rays from the high-frequency-peaked BL Lac object RGB J0152+017
- A GeV-TeV Measurement of the Extragalactic Background Light
- Modeling the Extragalactic Background Light and the Cosmic Star Formation History
- GAMA/DEVILS: Constraining the cosmic star-formation history from improved measurements of the 0.3-2.2 micron Extragalactic Background Light
- MAGIC observations of the giant radio galaxy M87 in a low-emission state between 2005 and 2007
- The high-energy -ray emission of AP Librae
- Gamma-ray Cosmology and Tests of Fundamental Physics
- Extragalactic Background Light: Inventory of light throughout the cosmic history
- Normalization of the extragalactic background light from high-energy gamma-ray observations
- The Making of Catalogues of Very-High-Energy γ-ray Sources