Star-forming galaxies have been predicted to contribute considerably to the isotropic diffuse gamma-ray background. The hadronic interactions responsible for high-energy gamma rays also produce high-energy neutrinos. Assuming that at least 100 PeV cosmic rays can be produced and confined in starburst galaxies, the expected intensity of the diffuse gamma-ray and high-energy neutrinos from star-forming galaxies has been derived by adopting the latest Herschel data up to z∼4z∼4. We find that starburst galaxies could be the main contributor to the high-energy neutrinos observed by the IceCube experiment. Taking the starburst spectral index as free parameter, our predictions are consistent with Fermi and IceCube data simultaneously for a E−2.15E...
Cosmic-ray protons accumulate for cosmological times in clusters of galaxies because their...
Ongoing experimental efforts to detect cosmic sources of high energy neutrinos are guided by the exp...
Loeb and Waxman have argued that high energy neutrinos from the decay of pions produced in interacti...
Star-forming galaxies have been predicted to contribute considerably to the diffuse gamma-ray backgr...
Starburst galaxies, which are known as 'reservoirs' of high-energy cosmic-rays, can represent an imp...
In nuclei of starburst galaxies (SBGs), the combination of an enhanced rate of supernova explosions ...
International audienceA signal of high-energy extraterrestrial neutrinos was discovered by the IceCu...
Star-forming and starburst galaxies, which are well-known cosmic-ray reservoirs, are expected to emi...
Cosmic-ray protons accumulate for cosmological times in clusters of galaxies because their typical r...
Mounting evidence suggests that the TeV-PeV neutrino flux detected by the IceCube telescope has main...
International audienceWe use Fermi g -ray and IceCube neutrino data to demonstrate that the IceCube ...
The IceCube (IC) collaboration recently reported the detection of TeV-PeV extraterrestrial neutrinos...
High-Energy Neutrinos from Astrophysical Accelerators of Cosmic Ray Nuclei Abstract: Ongoing experim...
International audienceCosmic-ray (CR) protons can accumulate for cosmological times in clusters of g...
Cosmic-ray protons accumulate for cosmological times in clusters of galaxies because their...
Ongoing experimental efforts to detect cosmic sources of high energy neutrinos are guided by the exp...
Loeb and Waxman have argued that high energy neutrinos from the decay of pions produced in interacti...
Star-forming galaxies have been predicted to contribute considerably to the diffuse gamma-ray backgr...
Starburst galaxies, which are known as 'reservoirs' of high-energy cosmic-rays, can represent an imp...
In nuclei of starburst galaxies (SBGs), the combination of an enhanced rate of supernova explosions ...
International audienceA signal of high-energy extraterrestrial neutrinos was discovered by the IceCu...
Star-forming and starburst galaxies, which are well-known cosmic-ray reservoirs, are expected to emi...
Cosmic-ray protons accumulate for cosmological times in clusters of galaxies because their typical r...
Mounting evidence suggests that the TeV-PeV neutrino flux detected by the IceCube telescope has main...
International audienceWe use Fermi g -ray and IceCube neutrino data to demonstrate that the IceCube ...
The IceCube (IC) collaboration recently reported the detection of TeV-PeV extraterrestrial neutrinos...
High-Energy Neutrinos from Astrophysical Accelerators of Cosmic Ray Nuclei Abstract: Ongoing experim...
International audienceCosmic-ray (CR) protons can accumulate for cosmological times in clusters of g...
Cosmic-ray protons accumulate for cosmological times in clusters of galaxies because their...
Ongoing experimental efforts to detect cosmic sources of high energy neutrinos are guided by the exp...
Loeb and Waxman have argued that high energy neutrinos from the decay of pions produced in interacti...