Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor the thermal neutron cavity of the E_LIBANS project. Silicon and silicon carbide semiconductors, plus vented air ion chambers, were chosen for this purpose. This communication describes the performance of these detectors, owing on the results of dedicated measurement campaigns
The e_LiBANS project aims at producing intense thermal neutron fields for diverse interdisciplinary ...
The e_LiBANS project aims at producing intense thermal neutron fields for diverse interdisciplinary ...
The e_LiBANS project aims at producing intense thermal neutron fields for diverse interdisciplinary ...
Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor t...
Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor t...
Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor t...
Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor t...
Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor t...
Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor t...
Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor t...
The e_LiBANS project aims at creating accelerator based compact neutron facilities for diverse inter...
The e_LiBANS project aims at creating accelerator based compact neutron facilities for diverse inter...
The e_LiBANS project aims at creating accelerator based compact neutron facilities for diverse inter...
The e_LiBANS project aims at creating accelerator based compact neutron facilities for diverse inter...
The e_LiBANS project aims at creating accelerator based compact neutron facilities for diverse inter...
The e_LiBANS project aims at producing intense thermal neutron fields for diverse interdisciplinary ...
The e_LiBANS project aims at producing intense thermal neutron fields for diverse interdisciplinary ...
The e_LiBANS project aims at producing intense thermal neutron fields for diverse interdisciplinary ...
Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor t...
Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor t...
Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor t...
Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor t...
Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor t...
Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor t...
Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor t...
The e_LiBANS project aims at creating accelerator based compact neutron facilities for diverse inter...
The e_LiBANS project aims at creating accelerator based compact neutron facilities for diverse inter...
The e_LiBANS project aims at creating accelerator based compact neutron facilities for diverse inter...
The e_LiBANS project aims at creating accelerator based compact neutron facilities for diverse inter...
The e_LiBANS project aims at creating accelerator based compact neutron facilities for diverse inter...
The e_LiBANS project aims at producing intense thermal neutron fields for diverse interdisciplinary ...
The e_LiBANS project aims at producing intense thermal neutron fields for diverse interdisciplinary ...
The e_LiBANS project aims at producing intense thermal neutron fields for diverse interdisciplinary ...