The Spallation Neutron Source * (SNS) employs an RF-driven, multi-cusp, H- ion source, which utilizes a helical antenna to inductively couple power into the source plasma. To date, the source has been successfully utilized in the commissioning of the SNS accelerator producing 10-40 mA of H- with duty-factors of ~0.1%. In the coming years, the SNS ion source will be required to inject ~60 mA into the linac with a duty-factor of 7%. This may require extraction of currents of up to ~100 mA from the ion source depending on source emittance. To date, the SNS source has only delivered sustained currents of ~30 mA at this duty factor. We are therefore exploring the possibility of meeting these requirements by combining a helicon hydrogen plasma ge...
The ion source and Low-Energy Transport (LEBT) system that will provide H{sup -} ion beams to the Sp...
The High Intensity Neutrino Source (HINS) program at Fermilab (formerly the Proton Driver) aims to d...
This paper reports on experiments aimed at developing a new high-intensity H{sup -} ion source with ...
The original ion source developed for the Spallation Neutron Source * (SNS) was an RF-driven, multi-...
The ion source for the 1 MW Spallation Neutron Source (SNS) is required to provide 35 mA of H- beam ...
A novel concept for creating intense beams of negative hydrogen ion beams has been devised, and firs...
The H{sup -} ion source for the Spallation Neutron Source (SNS) is a cesiated, radio-frequency drive...
The aim of the helicon plasma generator-assisted negative ion source development at Los Alamos Neutr...
The mechanical design of the prototype H- ion source for the Spallation Neutron Source (SNS) is pres...
Abstract. The ion source developed for the Spallation Neutron Source * (SNS) by Lawrence Berkeley Na...
The ion source for the Spallation Neutron Source* (SNS) is a radio frequency, multi-cusp source desi...
The ion source for the Spallation Neutron Source* (SNS) is a radio frequency, multi-cusp source desi...
The Spallation Neutron Source * (SNS) facility employs an RF-driven, Cs-enhanced, multi-cusp H- ion ...
The ion source and Low-Energy Transport (LEBT) system that will provide H- ion beams to the Spallati...
The neutron scattering community has endorsed the need for a high- power (1 to 5 MW) accelerator-dri...
The ion source and Low-Energy Transport (LEBT) system that will provide H{sup -} ion beams to the Sp...
The High Intensity Neutrino Source (HINS) program at Fermilab (formerly the Proton Driver) aims to d...
This paper reports on experiments aimed at developing a new high-intensity H{sup -} ion source with ...
The original ion source developed for the Spallation Neutron Source * (SNS) was an RF-driven, multi-...
The ion source for the 1 MW Spallation Neutron Source (SNS) is required to provide 35 mA of H- beam ...
A novel concept for creating intense beams of negative hydrogen ion beams has been devised, and firs...
The H{sup -} ion source for the Spallation Neutron Source (SNS) is a cesiated, radio-frequency drive...
The aim of the helicon plasma generator-assisted negative ion source development at Los Alamos Neutr...
The mechanical design of the prototype H- ion source for the Spallation Neutron Source (SNS) is pres...
Abstract. The ion source developed for the Spallation Neutron Source * (SNS) by Lawrence Berkeley Na...
The ion source for the Spallation Neutron Source* (SNS) is a radio frequency, multi-cusp source desi...
The ion source for the Spallation Neutron Source* (SNS) is a radio frequency, multi-cusp source desi...
The Spallation Neutron Source * (SNS) facility employs an RF-driven, Cs-enhanced, multi-cusp H- ion ...
The ion source and Low-Energy Transport (LEBT) system that will provide H- ion beams to the Spallati...
The neutron scattering community has endorsed the need for a high- power (1 to 5 MW) accelerator-dri...
The ion source and Low-Energy Transport (LEBT) system that will provide H{sup -} ion beams to the Sp...
The High Intensity Neutrino Source (HINS) program at Fermilab (formerly the Proton Driver) aims to d...
This paper reports on experiments aimed at developing a new high-intensity H{sup -} ion source with ...