Abstract Observation of high energy cosmic neutrinos by ICECUBE has ushered in a new era in exploring both cosmos and new physics beyond the Standard Model (SM). In the standard picture, although mostly ν μ and ν e are produced in the source, oscillation will produce ν τ en route. Certain beyond SM scenarios, like interaction with ultralight DM can alter this picture. Thus, the flavor composition of the cosmic neutrino flux can open up the possibility of exploring certain beyond the SM scenarios that are inaccessible otherwise. We show that the τ flavor holds a special place among the neutrino flavors in elucidating new physics. Interpreting the two anomalous events observed by ANITA as ν τ events makes the tau flavor even more intriguing. ...
The short-baseline neutrino oscillation experiments, the excess of radiation from the measurement of...
Recently (May-November 2013) highest energy neutrino events have been presented by ICECUBE. Most (21...
Evidence for an extraterrestrial flux of high-energy neutrinos has now been found in multiple search...
The evidence of a new population of diffuse high-energy neutrinos, obtained by IceCube, has opened a...
Abstract Recently, the ANITA collaboration announced the detection of new, unsettling upgoing Ultra-...
The highest-energy neutrino events identified so far were detected by the IceCube telescope between ...
© 2020. The American Astronomical Society. All rights reserved. During the first three flights of th...
High-energy cosmic neutrinos are expected to be produced in extremely energetic astrophysical source...
AbstractThe IceCube experiment has recently released 3 years of data of the first ever detected high...
Abstract High-energy tau neutrinos are rarely produced in atmospheric cosmic-ray show...
IceCube have observed neutrinos which are presumably of extra-galactic origin. Since specific source...
During the first three flights of the Antarctic Impulsive Transient Antenna (ANITA) experiment, the ...
The IceCube Neutrino Observatory at the South Pole, which detects Cherenkov light from charged parti...
The flux, spectrum and angular distribution of the excess neutrino signal detected by IceCube betwee...
Abstract. The atmospheric neutrino data collected by the IceCube experiment and its low-energy exten...
The short-baseline neutrino oscillation experiments, the excess of radiation from the measurement of...
Recently (May-November 2013) highest energy neutrino events have been presented by ICECUBE. Most (21...
Evidence for an extraterrestrial flux of high-energy neutrinos has now been found in multiple search...
The evidence of a new population of diffuse high-energy neutrinos, obtained by IceCube, has opened a...
Abstract Recently, the ANITA collaboration announced the detection of new, unsettling upgoing Ultra-...
The highest-energy neutrino events identified so far were detected by the IceCube telescope between ...
© 2020. The American Astronomical Society. All rights reserved. During the first three flights of th...
High-energy cosmic neutrinos are expected to be produced in extremely energetic astrophysical source...
AbstractThe IceCube experiment has recently released 3 years of data of the first ever detected high...
Abstract High-energy tau neutrinos are rarely produced in atmospheric cosmic-ray show...
IceCube have observed neutrinos which are presumably of extra-galactic origin. Since specific source...
During the first three flights of the Antarctic Impulsive Transient Antenna (ANITA) experiment, the ...
The IceCube Neutrino Observatory at the South Pole, which detects Cherenkov light from charged parti...
The flux, spectrum and angular distribution of the excess neutrino signal detected by IceCube betwee...
Abstract. The atmospheric neutrino data collected by the IceCube experiment and its low-energy exten...
The short-baseline neutrino oscillation experiments, the excess of radiation from the measurement of...
Recently (May-November 2013) highest energy neutrino events have been presented by ICECUBE. Most (21...
Evidence for an extraterrestrial flux of high-energy neutrinos has now been found in multiple search...