Context. The background radiation in the optical and the infrared cause energy loss in the propagation of high energy particles through space. In particular, TeV observations with Cherenkov telescopes of extragalactic sources are influenced by the opacity effects due to the interaction of the very high-energy source photons with the background light. Aims. With the aim of assessing with the best possible detail these opacity terms, we have modelled the extragalactic optical and infrared backgounds using available information on cosmic sources in the universe from far-UV to sub-millimeter wavelengths over a wide range of cosmic epochs. Methods. We have exploited the relevant cosmological survey data – including number count...
Attenuation of high-energy gamma-rays by pair production with ultraviolet, optical and infrared (IR)...
We calculate the intergalactic photon density as a function of both energy and redshift for 0 < z...
Aims.The extragalactic background light (EBL) in the ultraviolet to far-infrared wavelength region c...
Context. The background radiation in the optical and the infrared cause energy loss in the propagati...
Context: The background radiation in the optical and the infrared cause energy loss in the propagati...
Context. In addition to its relevant astrophysical and cosmological significance, the extragalactic ...
We extend our previous model-independent determination of the intergalactic background light, based ...
We present a measurement of the extragalactic background light (EBL) based on a joint likelihood ana...
We have previously calculated the intergalactic background light (IBL) as a function of redshift in ...
International audienceContext. Cumulative optical and infrared emission from galaxies accumulated ov...
The diffuse extragalactic background light consists of the sum of the starlight emitted by galaxies ...
We present a measurement of the extragalactic background light (EBL) based on a joint likelihood ana...
We present a measurement of the extragalactic background light (EBL) based on a joint likelihood ana...
The light emitted by stars and accreting compact objects through the history of the universe is enco...
Attenuation of high-energy gamma-rays by pair production with ultraviolet, optical and infrared (IR)...
We calculate the intergalactic photon density as a function of both energy and redshift for 0 < z...
Aims.The extragalactic background light (EBL) in the ultraviolet to far-infrared wavelength region c...
Context. The background radiation in the optical and the infrared cause energy loss in the propagati...
Context: The background radiation in the optical and the infrared cause energy loss in the propagati...
Context. In addition to its relevant astrophysical and cosmological significance, the extragalactic ...
We extend our previous model-independent determination of the intergalactic background light, based ...
We present a measurement of the extragalactic background light (EBL) based on a joint likelihood ana...
We have previously calculated the intergalactic background light (IBL) as a function of redshift in ...
International audienceContext. Cumulative optical and infrared emission from galaxies accumulated ov...
The diffuse extragalactic background light consists of the sum of the starlight emitted by galaxies ...
We present a measurement of the extragalactic background light (EBL) based on a joint likelihood ana...
We present a measurement of the extragalactic background light (EBL) based on a joint likelihood ana...
The light emitted by stars and accreting compact objects through the history of the universe is enco...
Attenuation of high-energy gamma-rays by pair production with ultraviolet, optical and infrared (IR)...
We calculate the intergalactic photon density as a function of both energy and redshift for 0 < z...
Aims.The extragalactic background light (EBL) in the ultraviolet to far-infrared wavelength region c...