The proposed PINGU project (Precision IceCube Next Generation Upgrade) is supposed to determine neutrino mass hierarchy through matter effects of atmospheric neutrinos crossing the Earth core and mantle, which leads to variations in the events spectrum in energy and zenith angle. The presence of non-negligible (and partly unknown) systematics on the spectral shape can make the statistical analysis particularly challenging in the limit of high statistics. Assuming plausible spectral shape uncertainties at the percent level (due to effective volume, cross section, resolution functions, oscillation parameters, etc.), we obtain a significant reduction in the sensitivity to the hierarchy. The obtained results show the importance of a dedicated r...
We study the possibility to perform neutrino oscillation tomography and to determine the neutrino ma...
The relatively large measured value of theta_13 has opened various possiblities to determine the neu...
Very large volume neutrino telescopes (VLVNTs) observe atmospheric neutrinos over a wide energy rang...
The proposed PINGU project (Precision IceCube Next Generation Upgrade) is supposed to determine neut...
The proposed PINGU project (Precision IceCube Next Generation Upgrade) is expected to collect O(10(5...
The proposed PINGU project (Precision IceCube Next Generation Upgrade) is expected to collect O(10^5...
AbstractThe nature of the neutrino mass hierarchy is one of the most interesting open questions in p...
The neutrino mass hierarchy is one of the few remaining unknown parameters in the neutrino sector a...
We explore the physics potential of multi-megaton scale ice or water Cherenkov detectors with low ($...
The next generation of large-volume neutrino telescopes will include low-energy subarrays which will...
© 2017 IOP Publishing Ltd. The Precision IceCube Next Generation Upgrade (PINGU) is a proposed lowen...
The Precision IceCube Next Generation Upgrade (PINGU) is a proposed lowenergy in-fill extension to t...
The Precision IceCube Next Generation Upgrade (PINGU) is a proposed low-energy in-fill extension to ...
The sensitivity of a huge underground water/ice Cherenkov detector, such as PINGU in IceCube, to the...
We study the possibility to perform neutrino oscillation tomography and to determine the neutrino ma...
The relatively large measured value of theta_13 has opened various possiblities to determine the neu...
Very large volume neutrino telescopes (VLVNTs) observe atmospheric neutrinos over a wide energy rang...
The proposed PINGU project (Precision IceCube Next Generation Upgrade) is supposed to determine neut...
The proposed PINGU project (Precision IceCube Next Generation Upgrade) is expected to collect O(10(5...
The proposed PINGU project (Precision IceCube Next Generation Upgrade) is expected to collect O(10^5...
AbstractThe nature of the neutrino mass hierarchy is one of the most interesting open questions in p...
The neutrino mass hierarchy is one of the few remaining unknown parameters in the neutrino sector a...
We explore the physics potential of multi-megaton scale ice or water Cherenkov detectors with low ($...
The next generation of large-volume neutrino telescopes will include low-energy subarrays which will...
© 2017 IOP Publishing Ltd. The Precision IceCube Next Generation Upgrade (PINGU) is a proposed lowen...
The Precision IceCube Next Generation Upgrade (PINGU) is a proposed lowenergy in-fill extension to t...
The Precision IceCube Next Generation Upgrade (PINGU) is a proposed low-energy in-fill extension to ...
The sensitivity of a huge underground water/ice Cherenkov detector, such as PINGU in IceCube, to the...
We study the possibility to perform neutrino oscillation tomography and to determine the neutrino ma...
The relatively large measured value of theta_13 has opened various possiblities to determine the neu...
Very large volume neutrino telescopes (VLVNTs) observe atmospheric neutrinos over a wide energy rang...