The CWDD (Continuous Wave Deuterium Demonstrator) accelerator was designed to accelerate 80 mA cw of D{sup {minus}} to 7.5 MeV. Most of the hardware for the first 2 MeV was installed at Argonne and major subsystems had been commissioned when program funding from the Ballistic Missile Defense Organization ended in October 1993. Renamed the Argonne Continuous Wave Linac (ACWL), we are proposing to complete it to accelerate either deuterons to 2 MeV or protons to 33.5 MeV. Equipped with a beryllium or other light-element target, it would make a potent source of neutrons (on the order of 10{sup 13} n/s) for BNCT and/or neutron radiography. Project status and proposals for turning ACWL into a neutron source are reviewed, including the results of...
Many of Argonne National Laboratory`s (ANL`s) scientific staff members were very active in R & D wor...
AimThis work aims at giving an updated report of the worldwide status of Accelerator-Based BNCT (AB-...
The neutron scattering community has endorsed the need for a high-power (1 to 5 MW) accelerator-driv...
Clinical trials of the boron neutron capture therapy (BNCT) have been conducted using research react...
Reactor based high resolution neutron radiography facilities are able to deliver a well-collimated (...
An accelerator-based BNCT facility is under construction at the Berkeley Lab. An electrostatic-quadr...
An accelerator-based BNCT facility is under development at the Lawrence Berkeley National Laboratory...
The overall goal of this project was to develop an accelerator-based neutron source (ABNS) for Boron...
Accelerator-based, pulsed spallation neutron sources have been performing neutron scattering researc...
Recently, the possibility to use compact accelerators coupled to high current ion sources for the pr...
Accelerator-based neutron sources are an attractive alternative to nuclear reactors for providing ep...
Brookhaven National Laboratory has been involved in advanced neutron sources almost from its incepti...
Brookhaven National Laboratory has been involved in advanced neutron sources almost from its incepti...
Accelerator-based neutron sources are an attractive alternative to nuclear reactors for providing ep...
Radio-frequency (RF) driven ion sources are being developed in Lawrence Berkeley National Laboratory...
Many of Argonne National Laboratory`s (ANL`s) scientific staff members were very active in R & D wor...
AimThis work aims at giving an updated report of the worldwide status of Accelerator-Based BNCT (AB-...
The neutron scattering community has endorsed the need for a high-power (1 to 5 MW) accelerator-driv...
Clinical trials of the boron neutron capture therapy (BNCT) have been conducted using research react...
Reactor based high resolution neutron radiography facilities are able to deliver a well-collimated (...
An accelerator-based BNCT facility is under construction at the Berkeley Lab. An electrostatic-quadr...
An accelerator-based BNCT facility is under development at the Lawrence Berkeley National Laboratory...
The overall goal of this project was to develop an accelerator-based neutron source (ABNS) for Boron...
Accelerator-based, pulsed spallation neutron sources have been performing neutron scattering researc...
Recently, the possibility to use compact accelerators coupled to high current ion sources for the pr...
Accelerator-based neutron sources are an attractive alternative to nuclear reactors for providing ep...
Brookhaven National Laboratory has been involved in advanced neutron sources almost from its incepti...
Brookhaven National Laboratory has been involved in advanced neutron sources almost from its incepti...
Accelerator-based neutron sources are an attractive alternative to nuclear reactors for providing ep...
Radio-frequency (RF) driven ion sources are being developed in Lawrence Berkeley National Laboratory...
Many of Argonne National Laboratory`s (ANL`s) scientific staff members were very active in R & D wor...
AimThis work aims at giving an updated report of the worldwide status of Accelerator-Based BNCT (AB-...
The neutron scattering community has endorsed the need for a high-power (1 to 5 MW) accelerator-driv...