We use the Monte Carlo simulation package FLUKA to study the production of neutrons in extensive air showers. In contrast to typical shower simulations, we consider the full range of neutron energies extending down to thermal neutrons. The importance of different neutron production mechanisms and their impact on the predicted neutron distributions in energy, lateral distance, and arrival time are discussed and compared with those of muons. In addition, the dependence of the predictions on the primary particle is studied
Neutron production in giga electron volt-scale neutrino interactions is a poorly studied process. We...
Neutron production in giga electron volt-scale neutrino interactions is a poorly studied process. We...
We describe the physics and codes developed in the Muon Physics Package. This package is a self-cont...
International audienceThe neutron cloud of an air shower differs significantly from its well-studied...
International audienceThe neutron cloud of an air shower differs significantly from its well-studied...
We report on a comparison study of the Monte Carlo packages GEANT4 and FLUKA for simulating neutron ...
Simulations show that neutrons are the most abundant component among extensive air shower hadrons. H...
Monte Carlo simulations of extensive air showers were performed using a couple of different nuclear ...
This paper presents Monte-Carlo simulations based on the Fluka code aiming to calculate the contribu...
Neutron production in GeV-scale neutrino interactions is a poorly studied process. We have measured...
FLUKA is a general purpose Monte Carlo transport and interaction code used for fundamental physics a...
Neutron production in GeV-scale neutrino interactions is a poorly studied process. We have measured ...
This thesis is concerned with the production of evaporation neutrons in neutron monitors by the char...
Neutron production in giga electron volt-scale neutrino interactions is a poorly studied process. We...
Using CORSIKA for simulating extensive air showers, we study the relation between the shower charact...
Neutron production in giga electron volt-scale neutrino interactions is a poorly studied process. We...
Neutron production in giga electron volt-scale neutrino interactions is a poorly studied process. We...
We describe the physics and codes developed in the Muon Physics Package. This package is a self-cont...
International audienceThe neutron cloud of an air shower differs significantly from its well-studied...
International audienceThe neutron cloud of an air shower differs significantly from its well-studied...
We report on a comparison study of the Monte Carlo packages GEANT4 and FLUKA for simulating neutron ...
Simulations show that neutrons are the most abundant component among extensive air shower hadrons. H...
Monte Carlo simulations of extensive air showers were performed using a couple of different nuclear ...
This paper presents Monte-Carlo simulations based on the Fluka code aiming to calculate the contribu...
Neutron production in GeV-scale neutrino interactions is a poorly studied process. We have measured...
FLUKA is a general purpose Monte Carlo transport and interaction code used for fundamental physics a...
Neutron production in GeV-scale neutrino interactions is a poorly studied process. We have measured ...
This thesis is concerned with the production of evaporation neutrons in neutron monitors by the char...
Neutron production in giga electron volt-scale neutrino interactions is a poorly studied process. We...
Using CORSIKA for simulating extensive air showers, we study the relation between the shower charact...
Neutron production in giga electron volt-scale neutrino interactions is a poorly studied process. We...
Neutron production in giga electron volt-scale neutrino interactions is a poorly studied process. We...
We describe the physics and codes developed in the Muon Physics Package. This package is a self-cont...