This final report summarizes the effort and presents the results of a Phase II fabrication effort to build an industrial prototype of the LBL developed high energy neutral beam source. The effort was primarily concentrated on incorporating hard vacuum dielectric seals and a ceramic high voltage accelerator insulator. Several other design changes were incorporated for cost, reliability or life improvements to include: (1) accelerator grid locating dowel pins to aid final alignment, (2) plasma source to accelerator captive fasteners to aid filament replacement during source maintenance, (3) molybdenum cooling tubes on all accelerator grids, (4) additional fasteners in the plasma generator to facilitate hard seals, (5) modified suppressor grid...
At the Lawrence Berkeley National Laboratory (LBNL) a diagnostic neutral beam injection system for ...
This paper is a report on H/sup -/ ion source development at BNL over the past ten years, with most ...
Highly ionized plasmas are being employed as a medium for charge neutralizing heavy ion beams in ord...
The basic tasks of this Phase II project were to: generate a set of design drawings suitable for qua...
The design of the prototype 120-keV, 65-A, 0.5-sec ion accelerator for TFTR-type beam systems is des...
The BNL design of a high energy neutral beam injector is based on the neutralization of negative ion...
The long-term objective of the BNL Neutral Beam Development Group is to design and test a neutral be...
The neutral-beam research and development effort at LLL has been concerned mainly with design, const...
Abstract. The paper reports the progress of R&D toward the ITER neutral beam (NB) system at Japa...
The design and fabrication of a surface conversion negative ion source and an 80 keV pre-accelerator...
The development of high intensity neutral beam injectors at the Lawrence Berkeley Laboratory has pro...
DIII-D has four neutral beamlines (NB). Each of these beamlines has two ion sources, each of which i...
Abstract: Technologies producing high current density (>20mA/cm2) negative ions at a low operatin...
The Neutral Beam Engineering Test Facility (NBETF) at Lawrence Berkeley Laboratory (LBL) is a Nation...
This paper presents: (1) A brief review of existing neutral beam (NB) power supply technology for op...
At the Lawrence Berkeley National Laboratory (LBNL) a diagnostic neutral beam injection system for ...
This paper is a report on H/sup -/ ion source development at BNL over the past ten years, with most ...
Highly ionized plasmas are being employed as a medium for charge neutralizing heavy ion beams in ord...
The basic tasks of this Phase II project were to: generate a set of design drawings suitable for qua...
The design of the prototype 120-keV, 65-A, 0.5-sec ion accelerator for TFTR-type beam systems is des...
The BNL design of a high energy neutral beam injector is based on the neutralization of negative ion...
The long-term objective of the BNL Neutral Beam Development Group is to design and test a neutral be...
The neutral-beam research and development effort at LLL has been concerned mainly with design, const...
Abstract. The paper reports the progress of R&D toward the ITER neutral beam (NB) system at Japa...
The design and fabrication of a surface conversion negative ion source and an 80 keV pre-accelerator...
The development of high intensity neutral beam injectors at the Lawrence Berkeley Laboratory has pro...
DIII-D has four neutral beamlines (NB). Each of these beamlines has two ion sources, each of which i...
Abstract: Technologies producing high current density (>20mA/cm2) negative ions at a low operatin...
The Neutral Beam Engineering Test Facility (NBETF) at Lawrence Berkeley Laboratory (LBL) is a Nation...
This paper presents: (1) A brief review of existing neutral beam (NB) power supply technology for op...
At the Lawrence Berkeley National Laboratory (LBNL) a diagnostic neutral beam injection system for ...
This paper is a report on H/sup -/ ion source development at BNL over the past ten years, with most ...
Highly ionized plasmas are being employed as a medium for charge neutralizing heavy ion beams in ord...