Journal Article PUBDB-2023-04110

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Constraining the cosmic-ray pressure in the inner Virgo Cluster using H.E.S.S. observations of M 87

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2023
EDP Sciences Les Ulis

Astronomy and astrophysics 675, A138 () [10.1051/0004-6361/202346056]
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Report No.: arXiv:2305.09607

Abstract: The origin of the gamma-ray emission from M87 is currently a matter of debate. This work aims to localize the VHE (100 GeV-100 TeV) gamma-ray emission from M87 and probe a potential extended hadronic emission component in the inner Virgo Cluster. The search for a steady and extended gamma-ray signal around M87 can constrain the cosmic-ray energy density and the pressure exerted by the cosmic rays onto the intra-cluster medium, and allow us to investigate the role of the cosmic rays in the active galactic nucleus feedback as a heating mechanism in the Virgo Cluster. H.E.S.S. telescopes are sensitive to VHE gamma rays and have been utilized to observe M87 since 2004. We utilized a Bayesian block analysis to identify M87 emission states with H.E.S.S. observations from 2004 until 2021, dividing them into low, intermediate, and high states. Because of the causality argument, an extended ($\gtrsim$kpc) signal is allowed only in steady emission states. Hence, we fitted the morphology of the 120h low state data and found no significant gamma-ray extension. Therefore, we derived for the low state an upper limit of 58'(corresponding to $\approx$4.6kpc) in the extension of a single-component morphological model described by a rotationally symmetric 2D Gaussian model at 99.7% confidence level. Our results exclude the radio lobes ($\approx$30 kpc) as the principal component of the VHE gamma-ray emission from the low state of M87. The gamma-ray emission is compatible with a single emission region at the radio core of M87. These results, with the help of two multiple-component models, constrain the maximum cosmic-ray to thermal pressure ratio $X_{{CR,max.}}$$\lesssim$$0.32$ and the total energy in cosmic-ray protons (CRp) to $U_{CR}$$\lesssim$5$\times10^{58}$ erg in the inner 20kpc of the Virgo Cluster for an assumed CRp power-law distribution in momentum with spectral index $\alpha_{p}$=2.1.

Keyword(s): gamma ray: emission ; gamma ray: VHE ; p: cosmic radiation ; cosmic radiation: energy ; cosmic radiation: pressure ; energy: density ; VIRGO ; cluster ; radio wave ; gamma ray: energy spectrum ; HESS ; AGN ; power spectrum ; causality ; feedback ; thermal ; Bayesian ; rotation ; TeV

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Note: A&A 675, A138 (2023). 15 pages, 7 figures. Accepted for publication in A&A. Corresponding authors: Victor Barbosa Martins, Stefan Ohm, Cornelia Arcaro, Natalia Żywucka, Mathieu de Naurois

Contributing Institute(s):
  1. High Energy Steroscopic System (ZEU-HESS)
  2. High Energy Steroscopic System (Z_HESS)
Research Program(s):
  1. 613 - Matter and Radiation from the Universe (POF4-613) (POF4-613)
Experiment(s):
  1. High Energy Stereoscopic System

Appears in the scientific report 2023
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Constraining the cosmic-ray pressure in the inner Virgo Cluster using H.E.S.S. observations of M 87
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 Record created 2023-07-12, last modified 2025-07-15


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