A simulation based on the Monte Carlo method is described which has been performed using MCNPX 2.6.0, to model the geometry of a sector-shaped liquid scintillation detector in response to coincident neutron events. The detection of neutrons from a mixed-oxide (MOX) fuel pellet has been simulated for different thicknesses of scintillators. A layer of lead has been used to reduce the gamma-ray fluence reaching the scintillator and, the effect of lead for neutron detection has also been estimated by considering different thicknesses of lead layers
The IAEA, in collaboration with the Joint Research Center (Ispra, IT) and Hybrid Instruments Ltd. (U...
We describe the use of the MCNP-PoliMi code to simulate, on an event-by-event basis, the detection o...
Organic scintillators, in both liquid and plastic form, are commonly used in systems for the detecti...
A simulation based on the Monte Carlo method is described which has been performed using MCNPX 2.6.0...
Neutron coincidence counting is an established, non-destructive method for the qualitative and quant...
A liquid scintillator-based neutron coincidence counting system designed to address a number of safe...
A liquid scintillator-based neutron coincidence counting system designed to address a number of safe...
A liquid scintillator-based neutron coincidence counting system designed to address a number of safe...
A liquid scintillator-based neutron coincidence counting system designed to address a number of safe...
A liquid scintillator-based neutron coincidence counting system designed to address a number of safe...
A liquid scintillator-based neutron coincidence counting system designed to address a number of safe...
This paper presents a new technique for the analysis of neutron pulse height distributions generated...
This paper presents a new technique for the analysis of neutron pulse height distributions generated...
The IAEA, in collaboration with the Joint Research Center (Ispra, IT) and Hybrid Instruments (UK), i...
The IAEA, in collaboration with the Joint Research Center (Ispra, IT) and Hybrid Instruments Ltd. (U...
The IAEA, in collaboration with the Joint Research Center (Ispra, IT) and Hybrid Instruments Ltd. (U...
We describe the use of the MCNP-PoliMi code to simulate, on an event-by-event basis, the detection o...
Organic scintillators, in both liquid and plastic form, are commonly used in systems for the detecti...
A simulation based on the Monte Carlo method is described which has been performed using MCNPX 2.6.0...
Neutron coincidence counting is an established, non-destructive method for the qualitative and quant...
A liquid scintillator-based neutron coincidence counting system designed to address a number of safe...
A liquid scintillator-based neutron coincidence counting system designed to address a number of safe...
A liquid scintillator-based neutron coincidence counting system designed to address a number of safe...
A liquid scintillator-based neutron coincidence counting system designed to address a number of safe...
A liquid scintillator-based neutron coincidence counting system designed to address a number of safe...
A liquid scintillator-based neutron coincidence counting system designed to address a number of safe...
This paper presents a new technique for the analysis of neutron pulse height distributions generated...
This paper presents a new technique for the analysis of neutron pulse height distributions generated...
The IAEA, in collaboration with the Joint Research Center (Ispra, IT) and Hybrid Instruments (UK), i...
The IAEA, in collaboration with the Joint Research Center (Ispra, IT) and Hybrid Instruments Ltd. (U...
The IAEA, in collaboration with the Joint Research Center (Ispra, IT) and Hybrid Instruments Ltd. (U...
We describe the use of the MCNP-PoliMi code to simulate, on an event-by-event basis, the detection o...
Organic scintillators, in both liquid and plastic form, are commonly used in systems for the detecti...