Abstract Preliminary results from a full 3-D calculation of atmospheric neutrino fluxes using the FLUKA interaction model are presented and compared to previous existing calculations. This effort is motivated mainly by the 3-D capability and the satisfactory degree of accuracy of the hadron-nucleus models embedded in the FLUKA code. Here we show examples of benchmarking tests of the model with cosmic ray experiment results. A comparison of our calculation of the atmospheric neutrino flux with that of the Bartol group, for E ν > 1 GeV, is presented
AbstractWe present the calculation of the atmospheric neutrino fluxes for the neutrino experiments p...
This paper is a mini-review of the atmospheric muon and neutrino flux calculations based upon a rece...
Precise simulation of secondary particle production and propagation in the atmosphere is a very impo...
The 3-dimensional (3-D) calculation of the atmospheric neutrino flux by means of the FLUKA Monte Car...
We present a fully three-dimensional calculation of atmospheric neutrino fluxes. Primary cosmic rays...
The atmospheric neutrino flux has been measured by several experiments and its understanding has bee...
FLUKA is a general purpose Monte Carlo transport and interaction code used for fundamental physics a...
A 3-dimensional calculation of atmospheric neutrinos flux is presented, and the results are compared...
The atmospheric neutrino flux calculated with FLUKA was originally limited to 100-200 GeV for statis...
Results of three-dimensional Monte Carlo calculation of low energy flux of atmospheric neutrinos are...
An evaluation of the principal uncertainties in the computation of neutrino fluxes produced in cosmi...
Using the ``modified DPMJET-III'' model explained in the previous paper, we calculate the atmospheri...
The file 'neutrino_flux_spectrums.h5' is a HDF5 dataset which contains the systematic and statistica...
A precise evaluation of the secondary particle production and propagation in the atmosphere is very ...
It is well known that the correlation of atmospheric neutrinos and muons are simply correlated in th...
AbstractWe present the calculation of the atmospheric neutrino fluxes for the neutrino experiments p...
This paper is a mini-review of the atmospheric muon and neutrino flux calculations based upon a rece...
Precise simulation of secondary particle production and propagation in the atmosphere is a very impo...
The 3-dimensional (3-D) calculation of the atmospheric neutrino flux by means of the FLUKA Monte Car...
We present a fully three-dimensional calculation of atmospheric neutrino fluxes. Primary cosmic rays...
The atmospheric neutrino flux has been measured by several experiments and its understanding has bee...
FLUKA is a general purpose Monte Carlo transport and interaction code used for fundamental physics a...
A 3-dimensional calculation of atmospheric neutrinos flux is presented, and the results are compared...
The atmospheric neutrino flux calculated with FLUKA was originally limited to 100-200 GeV for statis...
Results of three-dimensional Monte Carlo calculation of low energy flux of atmospheric neutrinos are...
An evaluation of the principal uncertainties in the computation of neutrino fluxes produced in cosmi...
Using the ``modified DPMJET-III'' model explained in the previous paper, we calculate the atmospheri...
The file 'neutrino_flux_spectrums.h5' is a HDF5 dataset which contains the systematic and statistica...
A precise evaluation of the secondary particle production and propagation in the atmosphere is very ...
It is well known that the correlation of atmospheric neutrinos and muons are simply correlated in th...
AbstractWe present the calculation of the atmospheric neutrino fluxes for the neutrino experiments p...
This paper is a mini-review of the atmospheric muon and neutrino flux calculations based upon a rece...
Precise simulation of secondary particle production and propagation in the atmosphere is a very impo...