The AGILE monitoring of Cygnus X-3: transient gamma-ray emission and spectral constraints
G. Piano, M. Tavani, V. Vittorini, A. Trois, A. Giuliani, A., Bulgarelli, Y. Evangelista, P. Coppi, E. Del Monte, S. Sabatini, E. Striani,, I. Donnarumma, D. Hannikainen, K. I. I. Koljonen, M. McCollough, G. Pooley,, S. Trushkin, R. Zanin, G. Barbiellini, M. Cardillo

TL;DR
This study monitored Cygnus X-3 with AGILE-GRID, detecting seven gamma-ray events linked to specific X-ray and radio states, and analyzed their spectral origins, finding both leptonic and hadronic models plausible for the emission.
Contribution
First comprehensive gamma-ray monitoring of Cygnus X-3 with AGILE-GRID, correlating gamma-ray activity with multiwavelength states and analyzing spectral emission scenarios.
Findings
Seven gamma-ray events detected, lasting one or two days each.
Gamma-ray activity coincides with soft X-ray states and precedes radio outbursts.
Both leptonic and hadronic models can explain the gamma-ray emission.
Abstract
We present the AGILE-GRID monitoring of Cygnus X-3, during the period between November 2007 and July 2009. We report here the whole AGILE-GRID monitoring of Cygnus X-3 in the AGILE "pointing" mode data-taking, to confirm that the gamma-ray activity coincides with the same repetitive pattern of multiwavelength emission and to analyze in depth the overall gamma-ray spectrum by assuming both leptonic and hadronic scenarios. Seven intense gamma-ray events were detected in this period, with a typical event lasting one or two days. These durations are longer than the likely cooling times of the gamma-ray emitting particles, implying we see continuous acceleration rather than the result of an impulsive event such as the ejection of a single plasmoid which then cools as it propagates outwards. Cross-correlating the AGILE-GRID light curve with X-ray and radio monitoring data, we find that the…
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