The beam optics of the Argonne Positive-Ion Injector
Conference
·
OSTI ID:6331802
The beam optics for Phase I of the Argonne Positive-Ion Injector linac system have been studied for a representative set of beams. The results of this study indicate that high charge state beams from an ECR source can be accelerated without significantly increasing the transverse or longitudinal emittance of the initial beam. It is expected that the beam quality from the PII-ATLAS system will be at least as good as presently achieved with the tandem-ATLAS system.
- Research Organization:
- Argonne National Lab., IL (USA)
- DOE Contract Number:
- W-31109-ENG-38
- OSTI ID:
- 6331802
- Report Number(s):
- CONF-870302-238; ON: DE87011520
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
43 PARTICLE ACCELERATORS
430200 -- Particle Accelerators-- Beam Dynamics
Field Calculations
& Ion Optics
430302* -- Particle Accelerators-- Injection & Extraction Systems
ACCELERATORS
ATLAS SUPERCONDUCTING LINAC
BEAM EMITTANCE
BEAM INJECTION
BEAM OPTICS
BEAMS
CAVITY RESONATORS
COMPUTERIZED SIMULATION
ECR HEATING
ELECTRONIC EQUIPMENT
EQUIPMENT
HEATING
HEAVY ION ACCELERATORS
HIGH-FREQUENCY HEATING
ION BEAMS
ION SOURCES
LINEAR ACCELERATORS
PLASMA HEATING
RESONATORS
SIMULATION
430200 -- Particle Accelerators-- Beam Dynamics
Field Calculations
& Ion Optics
430302* -- Particle Accelerators-- Injection & Extraction Systems
ACCELERATORS
ATLAS SUPERCONDUCTING LINAC
BEAM EMITTANCE
BEAM INJECTION
BEAM OPTICS
BEAMS
CAVITY RESONATORS
COMPUTERIZED SIMULATION
ECR HEATING
ELECTRONIC EQUIPMENT
EQUIPMENT
HEATING
HEAVY ION ACCELERATORS
HIGH-FREQUENCY HEATING
ION BEAMS
ION SOURCES
LINEAR ACCELERATORS
PLASMA HEATING
RESONATORS
SIMULATION