This paper describes the mechanical design of the downstream beam transport line for the second axis of the Dual Axis Radiographic Hydrodynamic Test (DARHT II) Facility. The DARHT II project is a collaboration between LANL, LBNL and LLNL. DARHT II is a 20-MeV, 2000-Amperes, 2-m sec linear induction accelerator designed to generate short bursts of x-rays for the purpose of radiographing dense objects. The downstream beam transport line is an 18-meter long region extending from the end of the accelerator to the bremsstrahlung target. Within this proposed transport line there are 17 conventional solenoid, quadrupole and dipole magnets; as well as several specialty magnets, which transport and focus the beam to the target and beam dumps. There ...
This paper presents the physics design of the DARHT-II downstream system, which consists of a diagno...
This paper presents the physics design of the DARHT-II downstream system, which consists of a diagno...
The accelerator for the second axis of the Dual Axis Radiographic Hydrodynamic Test (DARHT) facility...
This paper describes the mechanical design of the downstream beam transport line for the second axis...
This paper describes the design of the downstream beam transport line for the second axis of the Dua...
The next generation of radiographic machines based on induction accelerators require very high brigh...
The second axis of the Dual Axis Radiographic Hydro-Test (DARHT) facility will provide up to four sh...
The accelerator on the second-axis of the Dual-Axis Radiographic Hydrodynamic Test (DARHT-II) facili...
The accelerator for the second-axis of the Dual Axis Radiographic Hydrodynamic Test (DARHT) facility...
The second phase accelerator for the Dual Axis Hydrodynamic Test facility (DARHT) is designed to pro...
The second axis of the Dual Axial radiography Hydrodynamic Test (DARHT-II) facility at LANL is curre...
The Dual-Axis Radiographic Hydrodynamics Test (DARHT) facility will employ two perpendicular electro...
During normal DARHT II operation, the beam exiting the accelerator will be well characterized by its...
The injector for the second axis of the Dual-Axis Radiographic Hydrotest Facility (DARHT) is being c...
The Dual-Axis Radiographic Hydrodynamics Test (DARHT) Facility will employ two electron linear induc...
This paper presents the physics design of the DARHT-II downstream system, which consists of a diagno...
This paper presents the physics design of the DARHT-II downstream system, which consists of a diagno...
The accelerator for the second axis of the Dual Axis Radiographic Hydrodynamic Test (DARHT) facility...
This paper describes the mechanical design of the downstream beam transport line for the second axis...
This paper describes the design of the downstream beam transport line for the second axis of the Dua...
The next generation of radiographic machines based on induction accelerators require very high brigh...
The second axis of the Dual Axis Radiographic Hydro-Test (DARHT) facility will provide up to four sh...
The accelerator on the second-axis of the Dual-Axis Radiographic Hydrodynamic Test (DARHT-II) facili...
The accelerator for the second-axis of the Dual Axis Radiographic Hydrodynamic Test (DARHT) facility...
The second phase accelerator for the Dual Axis Hydrodynamic Test facility (DARHT) is designed to pro...
The second axis of the Dual Axial radiography Hydrodynamic Test (DARHT-II) facility at LANL is curre...
The Dual-Axis Radiographic Hydrodynamics Test (DARHT) facility will employ two perpendicular electro...
During normal DARHT II operation, the beam exiting the accelerator will be well characterized by its...
The injector for the second axis of the Dual-Axis Radiographic Hydrotest Facility (DARHT) is being c...
The Dual-Axis Radiographic Hydrodynamics Test (DARHT) Facility will employ two electron linear induc...
This paper presents the physics design of the DARHT-II downstream system, which consists of a diagno...
This paper presents the physics design of the DARHT-II downstream system, which consists of a diagno...
The accelerator for the second axis of the Dual Axis Radiographic Hydrodynamic Test (DARHT) facility...