Aims. We study the possible detection of and properties of very high-energy (VHE) γ-ray emission (in the energy band above 100 GeV) from high redshift sources. Methods. We report on the detection of VHE γ-ray flux from blazars with redshifts z> 0.5. We use the data of Fermi telescope in the energy band above 100 GeV and identify significant sources via cross-correlation of arrival directions of individual VHE γ-rays with the positions of known Fermi sources. Results. There are thirteen high-redshift sources detected in the VHE band by Fermi/LAT telescope. The present statistics of the Fermi signal from these sources is too low for a sensible study of the effects of suppression of the VHE flux by pair production through interactions with ...
High redshift blazars are among the most powerful objects in the Universe. Although they represent a...
The flat-spectrum radio quasar PKS 1441+25 at a redshift of z = 0.940 is detected between 40 and 250...
The flat-spectrum radio quasar PKS 1441+25 at a redshift of z = 0.940 is detected between 40 and 250...
Aims. We study the possible detection of and properties of very high-energy (VHE) γ-ray emission (in...
High redshift blazars are among the most powerful objects in the Universe. Although they represent a...
We report on the discovery of high-energy (HE; E \u3e 0.1 GeV) and very high energy (VHE; E \u3e 100...
We report on the discovery of high-energy (HE; E > 0.1 GeV) and very high energy (VHE; E &...
We report on the detection of very high energy (VHE; E > 100 GeV) γ-ray emission from the BL Lac obj...
The number of known very high energy (VHE) blazars is ∼50, which is very small in comparison to the ...
The number of known very high energy (VHE) blazars is ~50, which is very small in comparison to the ...
The number of known very high energy (VHE) blazars is \u2dc50, which is very small in comparison to ...
International audienceWe report on the detection of very high energy (VHE; E > 100 GeV) γ-ray emissi...
The flat-spectrum radio quasar PKS 1441+25 at a redshift of z = 0.940 is detected between 40 and 250...
High redshift blazars are among the most powerful objects in the Universe. Although they represent a...
The flat-spectrum radio quasar PKS 1441+25 at a redshift of z = 0.940 is detected between 40 and 250...
The flat-spectrum radio quasar PKS 1441+25 at a redshift of z = 0.940 is detected between 40 and 250...
Aims. We study the possible detection of and properties of very high-energy (VHE) γ-ray emission (in...
High redshift blazars are among the most powerful objects in the Universe. Although they represent a...
We report on the discovery of high-energy (HE; E \u3e 0.1 GeV) and very high energy (VHE; E \u3e 100...
We report on the discovery of high-energy (HE; E > 0.1 GeV) and very high energy (VHE; E &...
We report on the detection of very high energy (VHE; E > 100 GeV) γ-ray emission from the BL Lac obj...
The number of known very high energy (VHE) blazars is ∼50, which is very small in comparison to the ...
The number of known very high energy (VHE) blazars is ~50, which is very small in comparison to the ...
The number of known very high energy (VHE) blazars is \u2dc50, which is very small in comparison to ...
International audienceWe report on the detection of very high energy (VHE; E > 100 GeV) γ-ray emissi...
The flat-spectrum radio quasar PKS 1441+25 at a redshift of z = 0.940 is detected between 40 and 250...
High redshift blazars are among the most powerful objects in the Universe. Although they represent a...
The flat-spectrum radio quasar PKS 1441+25 at a redshift of z = 0.940 is detected between 40 and 250...
The flat-spectrum radio quasar PKS 1441+25 at a redshift of z = 0.940 is detected between 40 and 250...