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Field Calculation of D0 Toroids and Comparison With Measurement

Description: The magnetic structure of the D0 detector is described in an earlier report. The two-dimensional code POISSON was used for the initial design of the magnetic structures and the magnetic properties of the D0 toroids. During the construction, the two-dimensional code ANSYS was used to perform more detailed calculations. Full three-dimensional analysis was also performed using the code TOSCA. These new results are reported here and compared with measurements. In this study the magnetic flux in all… more
Date: June 1, 1992
Creator: Yamada, R.; Ostiguy, F. & Brzezniak, J.
Partner: UNT Libraries Government Documents Department
open access

Field Calculation of D0 Toroids and Comparison With Measurement

Description: The magnetic structure of the D0 detector is described in an earlier report. The two-dimensional code POISSON was used for the initial design of the magnetic structures and the magnetic properties of the D0 toroids. During the construction, the two-dimensional code ANSYS was used to perform more detailed calculations. Full three-dimensional analysis was also performed using the code TOSCA. These new results are reported here and compared with measurements. In this study the magnetic flux in all… more
Date: June 1, 1992
Creator: Yamada, R.; Ostiguy, F. & Brzezniak, J.
Partner: UNT Libraries Government Documents Department
open access

Recycler model magnet test on temperature compensation for strontium ferrite

Description: The Recycler ring magnet will be made of Strontium ferrite permanent magnets. A strontium ferrite permanent magnet without compensation has a temperature coefficient of -0.2 % in dB/dT. To compensate this effect, we are utilizing 30 % Ni 70 % Fe alloy, a temperature compensation ferromagnetic material with a low Curie point. To search for optimum commercially available material and optimum condition, we made a couple of simple model magnets, and tested with several different compensating materi… more
Date: October 1, 1995
Creator: Yamada, R.; Foster, W.; Ostiguy, F. & Wake, M.
Partner: UNT Libraries Government Documents Department
open access

ORBIT : BEAM DYNAMICS CALCULATIONS FOR HIGH - INTENSITY RINGS.

Description: We are developing a computer code, ORBIT, specifically for beam dynamics calculations in high-intensity rings. Our approach allows detailed simulation of realistic accelerator problems. ORBIT is a particle-in-cell tracking code that transports bunches of interacting particles through a series of nodes representing elements, effects, or diagnostics that occur in the accelerator lattice. At present, ORBIT contains detailed models for strip-foil injection including painting and foil scattering; rf… more
Date: June 3, 2002
Creator: Holmes, J. A.; Danilov, V.; Galambos, J.; Shishlo, A.; Cousineau, S.; Chou, W. et al.
Partner: UNT Libraries Government Documents Department
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