Review applies the photohadronic model with EBL corrections to explain multi-TeV flaring in three nearby blazars.
EBL effect on the observation of multi-TeV flaring of 2009 from Markarian 501
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abstract
Markarian 501 is a high-peaked BL Lacertae object and has undergone many major outburst since its discovery in 1996. As a part of the multiwavelength campaign, in the year 2009 this blazar was observed for 4.5 months from March 9 to August 1 and during the period April 17 to May 5 it was observed by both space and ground based observatories covering the entire electromagnetic spectrum. A very strong high energy $\gamma$-ray flare was observed on May 1 by Whipple telescope in the energy range 317 GeV to 5 TeV and the flux was about 10 times higher than the baseline flux. We use the photohadronic model complimented by the extragalactic background radiation (EBL) correction to this very high state flare and have shown that the EBL plays an important role in attenuating the very high energy flux even though Markarian 501 is in the local Universe.
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Multi-TeV flaring in nearby High Energy Blazars: A photohadronic scenario
Review applies the photohadronic model with EBL corrections to explain multi-TeV flaring in three nearby blazars.