The injector for the second axis of the dual-axis Radiographic Hydrotest Facility (DARHT) is being designed and manufactured in LBNL. The injector consists of a single gap diode extracting a 2 microseconds, 2kA (can be extended to 4kA), up to 3.5MV electrons from a dispenser cathode. The diode is powered through a high voltage insulating column by a Marx generator. We shall present an overview of the 3.5 MV diode diagnostics, including: the A-K gap voltage measurement using a capacitive voltage divider (dE/dt) probe, cathode (source) current using 12 low inductance stainless steel foil current viewing resistors (CVRs) located on the cathode base plate, anode dark current collected on the anode shroud using CVRs. A rise in the dark current, ...
The temporal behavior of high-power diodes is closely related to the impedance collapse caused by th...
The Dual-Axis Radiographic Hydrodynamics Test (DARHT) facility will employ two perpendicular electro...
We investigated a new cathode design and beam transport with the EPURE axis-1 injector in order to i...
The injector for the second axis of the Dual-Axis Radiographic Hydrotest Facility (DARHT) is being c...
The injector for the second axis of the Dual-Axis Radiographic Hydrotest Facility (DARHT) is being d...
We are constructing a 1.2-kA, 1-MeV, electron induction injector as part of the RTA program, a colla...
The second axis of the Dual Axis Radiographic Hydro-Test (DARHT) facility will provide up to four sh...
Low beam emittance is key to achieving the required spot size at the output focus of the DARHT Secon...
The Dual-Axis Radiographic Hydrodynamics Test (DARHT) Facility will employ two electron linear induc...
The injector for the DARHT second-axis injector will use an 8-in. thermionic dispenser cathode. Beca...
The Dual-Axis Radiographic Hydrodynamics Test (DARHT) facility will employ two perpendicular electro...
The injector for the DARHT second-axis will use an 8” thermionic dispenser cathode. Because the cath...
The next generation of radiographic machines based on induction accelerators require very high brigh...
A 3.2 MeV injector has been designed and built for the DARHT II Project at Los Alamos Lab. The insta...
This paper describes the mechanical design of the downstream beam transport line for the second axis...
The temporal behavior of high-power diodes is closely related to the impedance collapse caused by th...
The Dual-Axis Radiographic Hydrodynamics Test (DARHT) facility will employ two perpendicular electro...
We investigated a new cathode design and beam transport with the EPURE axis-1 injector in order to i...
The injector for the second axis of the Dual-Axis Radiographic Hydrotest Facility (DARHT) is being c...
The injector for the second axis of the Dual-Axis Radiographic Hydrotest Facility (DARHT) is being d...
We are constructing a 1.2-kA, 1-MeV, electron induction injector as part of the RTA program, a colla...
The second axis of the Dual Axis Radiographic Hydro-Test (DARHT) facility will provide up to four sh...
Low beam emittance is key to achieving the required spot size at the output focus of the DARHT Secon...
The Dual-Axis Radiographic Hydrodynamics Test (DARHT) Facility will employ two electron linear induc...
The injector for the DARHT second-axis injector will use an 8-in. thermionic dispenser cathode. Beca...
The Dual-Axis Radiographic Hydrodynamics Test (DARHT) facility will employ two perpendicular electro...
The injector for the DARHT second-axis will use an 8” thermionic dispenser cathode. Because the cath...
The next generation of radiographic machines based on induction accelerators require very high brigh...
A 3.2 MeV injector has been designed and built for the DARHT II Project at Los Alamos Lab. The insta...
This paper describes the mechanical design of the downstream beam transport line for the second axis...
The temporal behavior of high-power diodes is closely related to the impedance collapse caused by th...
The Dual-Axis Radiographic Hydrodynamics Test (DARHT) facility will employ two perpendicular electro...
We investigated a new cathode design and beam transport with the EPURE axis-1 injector in order to i...