We explain in a unified way the experimental data on ultrahigh energy cosmic rays (UHECR) and neutrinos, using a single source class and obeying limits on the extragalactic diffuse gamma-ray background (EGRB). If UHECRs only interact hadronically with gas around their sources, the resulting diffuse CR flux can be matched well to the observed one, providing at the same time large neutrino fluxes. Since the required fraction of heavy nuclei is, however, rather large, air showers in the Earth’s atmosphere induced by UHECRs with energies E >∼ 3 × 1018 eV would reach in such a case their maxima too high. Therefore additional photo-hadronic interactions of UHECRs close to the accelerator have to be present, in order to modify the nuclear composit...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
International audienceGeV–TeV gamma-rays and PeV–EeV neutrino backgrounds provide a unique window on...
International audienceWe explain in a unified way the experimental data on ultrahigh energy cosmic r...
International audienceWe aim to explain in a unified way the experimental data on ultrahigh-energy c...
International audienceWe aim to explain in a unified way the experimental data on ultrahigh-energy c...
International audienceWe aim to explain in a unified way the experimental data on ultrahigh-energy c...
International audienceWe aim to explain in a unified way the experimental data on ultrahigh-energy c...
The origin of ultrahigh energy cosmic rays (UHECR) is still unknown. However, great progress has bee...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
International audienceGeV–TeV gamma-rays and PeV–EeV neutrino backgrounds provide a unique window on...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
International audienceGeV–TeV gamma-rays and PeV–EeV neutrino backgrounds provide a unique window on...
International audienceWe explain in a unified way the experimental data on ultrahigh energy cosmic r...
International audienceWe aim to explain in a unified way the experimental data on ultrahigh-energy c...
International audienceWe aim to explain in a unified way the experimental data on ultrahigh-energy c...
International audienceWe aim to explain in a unified way the experimental data on ultrahigh-energy c...
International audienceWe aim to explain in a unified way the experimental data on ultrahigh-energy c...
The origin of ultrahigh energy cosmic rays (UHECR) is still unknown. However, great progress has bee...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
International audienceGeV–TeV gamma-rays and PeV–EeV neutrino backgrounds provide a unique window on...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
19 pages, 16 figuresInternational audienceThe dip model assumes that the ultra-high energy cosmic ra...
International audienceGeV–TeV gamma-rays and PeV–EeV neutrino backgrounds provide a unique window on...