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Title: PARTICLE ACCELERATOR DIVISION SUMMARY REPORT FOR APRIL 15, 1958 THROUGH OCTOBER 1958

Abstract

Progress on various theoretical studies are reported. DC model magnet studies to determine the optimum size and position of correcting holes drilled in the magnet yoke are described The major design criteria for the ring magnet are given. The current in the magnet of the 12.5 Bev proton synchrotron was calculated. The power supply characteristics and operating conditions are described. The side coil assembly phase of the ring magnet ooil program is described. The radiofrequency system consisting of accelerating cavity, rndiofrequency program, noise-measuring systems, power amplifier, and beam inanction electrodes is discussed Detailed studies were made of the BNL Linac design and such modifications were made as are required to meet the specific needs of the ANL injector system. Two methods of fabrication of the ring magnet vacuum chamber are discussed. A preliminary study and desige was made of several vacuum pumpimg systems for the ZGS accelerator. Investigations on the vacuum properties of epaxy plastics, evapor-ion pumps, water flow control, and foundations are reported. (For preceding period see ANL-5564.) (W.D.M.)

Publication Date:
Research Org.:
Argonne National Lab., Lemont, Ill.
OSTI Identifier:
4274783
Report Number(s):
ANL-5956
NSA Number:
NSA-13-007831
DOE Contract Number:  
W-31-109-ENG-38
Resource Type:
Technical Report
Resource Relation:
Other Information: Orig. Receipt Date: 31-DEC-59
Country of Publication:
United States
Language:
English
Subject:
PARTICLE ACCELERATORS AND HIGH-VOLTAGE MACHINES; AMPLIFIERS- BEAMS- CAVITY RESONATORS- CIRCUITS- ELECTRONS- INDUCTION- MEASURED VALUES- MICROWAVES- PLANNING- POWER- PROGRAMMING- PROTON BEAMS- RADIO WAVES- RESONANCE- SYNCHROTRONS- ZGS ACCELERATOR; COILS- CURRENTS- ENERGY RANGE- MAGNETS- NUMERICALS- OPERATION- PLANNING- POWER- PROTON BEAMS- SYNCHROTRONS- - ZGS ACCELERATOR; CONTROL- EVAPORATION- ION PUMPS- IONIZATION- IONS- PLANNING- POLYMERS- PROTON BEAMS- PUMPS- RESINS- SYNCHROTRONS- VACUUM- VESSELS- WATER COOLANT- ZGS ACCELERATOR; INJECTION- LINEAR ACCELERATORS- PLANNING- PROTON BEAMS- SYNCHROTRONS- ZGS ACCELERATOR; NUCLEAR THEORY

Citation Formats

None. PARTICLE ACCELERATOR DIVISION SUMMARY REPORT FOR APRIL 15, 1958 THROUGH OCTOBER 1958. United States: N. p., 1959. Web. doi:10.2172/4274783.
None. PARTICLE ACCELERATOR DIVISION SUMMARY REPORT FOR APRIL 15, 1958 THROUGH OCTOBER 1958. United States. doi:10.2172/4274783.
None. Sun . "PARTICLE ACCELERATOR DIVISION SUMMARY REPORT FOR APRIL 15, 1958 THROUGH OCTOBER 1958". United States. doi:10.2172/4274783. https://www.osti.gov/servlets/purl/4274783.
@article{osti_4274783,
title = {PARTICLE ACCELERATOR DIVISION SUMMARY REPORT FOR APRIL 15, 1958 THROUGH OCTOBER 1958},
author = {None},
abstractNote = {Progress on various theoretical studies are reported. DC model magnet studies to determine the optimum size and position of correcting holes drilled in the magnet yoke are described The major design criteria for the ring magnet are given. The current in the magnet of the 12.5 Bev proton synchrotron was calculated. The power supply characteristics and operating conditions are described. The side coil assembly phase of the ring magnet ooil program is described. The radiofrequency system consisting of accelerating cavity, rndiofrequency program, noise-measuring systems, power amplifier, and beam inanction electrodes is discussed Detailed studies were made of the BNL Linac design and such modifications were made as are required to meet the specific needs of the ANL injector system. Two methods of fabrication of the ring magnet vacuum chamber are discussed. A preliminary study and desige was made of several vacuum pumpimg systems for the ZGS accelerator. Investigations on the vacuum properties of epaxy plastics, evapor-ion pumps, water flow control, and foundations are reported. (For preceding period see ANL-5564.) (W.D.M.)},
doi = {10.2172/4274783},
journal = {},
number = ,
volume = ,
place = {United States},
year = {1959},
month = {2}
}