A next-generation, high-flux DD neutron generator has been designed, commissioned, and characterized, and is now operational in a new facility at the University of California Berkeley. The generator, originally designed for 40Ar/39Ar dating of geological materials, has since served numerous additional applications, including medical isotope production studies, with others planned for the near future. In this work, we present an overview of the High Flux Neutron Generator (HFNG) which includes a variety of simulations, analytical models, and experimental validation of results. Extensive analysis was performed in order to characterize the neutron yield, flux, and energy distribution at specific locations where samples may be loaded for irradi...
Various types of neutron generator systems have been designed and tested at the Plasma and Ion Sourc...
This research and development program was designed to improve nondestructive evaluation of large mec...
The development of compact electronic gamma and neutron sources utilizing several deuteron-induced n...
A next-generation, high-flux DD neutron generator has been designed, commissioned, and characterized...
A facility based on a next-generation, high-flux D-D neutron generator (HFNG) was commissioned at th...
A facility based on a next-generation, high-flux D-D neutron generator has been commissioned and it ...
A facility based on a next-generation, high-flux D-D neutron generator has been commissioned and it ...
Compact high flux neutron generators are developed at the Lawrence Berkeley National Laboratory. The...
We designed and tested a compact deuteron-deuteron fusion neutron generator for application to 40Ar/...
International audienceWe designed and tested a compact deuteron-deuteron fusion neutron generator fo...
International audienceWe designed and tested a compact deuteron-deuteron fusion neutron generator fo...
The Plasma and Ion Source Technology Group at Lawrence Berkeley National Laboratory has developed va...
A wide variety of applications ranging from medical (BNCT, Boron Neutron Capture Therapy) and basic...
The Plasma and Ion Source Technology Group at the Lawrence Berkeley National Laboratory has been eng...
In present paper, an approach for high yield compact D-D neutron generator based on a high current ...
Various types of neutron generator systems have been designed and tested at the Plasma and Ion Sourc...
This research and development program was designed to improve nondestructive evaluation of large mec...
The development of compact electronic gamma and neutron sources utilizing several deuteron-induced n...
A next-generation, high-flux DD neutron generator has been designed, commissioned, and characterized...
A facility based on a next-generation, high-flux D-D neutron generator (HFNG) was commissioned at th...
A facility based on a next-generation, high-flux D-D neutron generator has been commissioned and it ...
A facility based on a next-generation, high-flux D-D neutron generator has been commissioned and it ...
Compact high flux neutron generators are developed at the Lawrence Berkeley National Laboratory. The...
We designed and tested a compact deuteron-deuteron fusion neutron generator for application to 40Ar/...
International audienceWe designed and tested a compact deuteron-deuteron fusion neutron generator fo...
International audienceWe designed and tested a compact deuteron-deuteron fusion neutron generator fo...
The Plasma and Ion Source Technology Group at Lawrence Berkeley National Laboratory has developed va...
A wide variety of applications ranging from medical (BNCT, Boron Neutron Capture Therapy) and basic...
The Plasma and Ion Source Technology Group at the Lawrence Berkeley National Laboratory has been eng...
In present paper, an approach for high yield compact D-D neutron generator based on a high current ...
Various types of neutron generator systems have been designed and tested at the Plasma and Ion Sourc...
This research and development program was designed to improve nondestructive evaluation of large mec...
The development of compact electronic gamma and neutron sources utilizing several deuteron-induced n...