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GeV - PeV Neutrino Production and Oscillation in hidden jets from GRBs
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Long gamma-ray bursts have been widely associated with collapsing massive stars in the framework of collapsar model. High-energy neutrinos and photons can be produced in the internal shocks of middle relativistic jets from core-collapse supernova. Although photons can hardly escape, high-energy neutrinos could be the only signature when the jets are hidden. We show that using suitable parameters, high-energy neutrinos in GeV - PeV range can be produced in the hidden jet inside the collapsar, thus demonstrating that these objects are candidates to produce neutrinos with energies between 1 - 10 PeV which were observed with IceCube. On the other hand, due to matter effects, high-energy neutrinos may oscillate resonantly from one flavor to another before leaving the star. Using two (solar, atmospheric and accelerator parameters) and three neutrino mixing, we study the possibility of resonant oscillation for these neutrinos created in internal shocks. Also we compute the probabilities of neutrino oscillations in the matter at different distances along the jet (before leaving the star) and after in vacuum, on their path to Earth. Finally, neutrino flavor ratios on Earth are estimated.
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Cited by 2 Pith papers
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Search for very-high-energy emission with HAWC from GW170817 event
HAWC reports no TeV emission from GW170817 up to about 120 days after the event and gives 1 to 100 TeV flux upper limits for it and two similar short gamma-ray bursts.
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Search for very-high-energy photons from Gamma-ray bursts with HAWC
No statistically significant very-high-energy emission was seen from four GRBs in HAWC's field of view, and new flux upper limits were set for each.
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