Gamma-ray observations of Cygnus X-1 above 100 MeV in the hard and soft states
S. Sabatini, M. Tavani, P. Coppi, G. Pooley, M. Del Santo, R. Campana,, A. Chen, Y. Evangelista, G. Piano, A. Bulgarelli, P. W. Cattaneo, S., Colafrancesco, E. Del Monte, A. Giuliani, M. Giusti, F. Longo, A. Morselli,, A. Pellizzoni, M. Pilia, E. Striani, M. Trifoglio

TL;DR
This study used AGILE satellite data to analyze gamma-ray emissions from Cygnus X-1 during different states, finding no significant emission above 100 MeV in the soft state and discussing implications for black hole accretion models.
Contribution
First comprehensive gamma-ray monitoring of Cygnus X-1 during a prolonged soft state, providing upper limits on high-energy emission and insights into emission mechanisms.
Findings
No prominent gamma-ray emission above 100 MeV during the soft state
Detection of a candidate gamma-ray flare coinciding with a state transition
Constraints on non-thermal particle components in the accretion disk
Abstract
We present the results of multi-year gamma-ray observations by the AGILE satellite of the black hole binary system Cygnus X-1. In a previous investigation we focused on gamma-ray observations of Cygnus X-1 in the hard state during the period mid-2007/2009. Here we present the results of the gamma-ray monitoring of Cygnus X-1 during the period 2010/mid-2012 carried out for which includes a remarkably prolonged `soft state' phase (June 2010 -- May 2011). Previous 1--10 MeV observations of Cyg X-1 in this state hinted at a possible existence of a non-thermal particle component with substantial modifications of the Comptonized emission from the inner accretion disk. Our AGILE data, averaged over the mid-2010/mid-2011 soft state of Cygnus X-1, provide a significant upper limit for gamma-ray emission above 100 MeV of F_soft < 20 x 10^{-8} ph/cm^2/s, excluding the existence of prominent…
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