Overview of the Structure Resonances in the AGS-Booster Lattices
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Release | : 1986 |
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Release | : 1986 |
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We have investigated the nonlinear effects with the emphasis on nonlinear resonances. We present some of our findings (e.g., the structure resonances; stop-bandwiths, etc.) for the AGS-Booster Lattice using program HARMON. Comparison with the results obtained from our algorithm ''NONLIN'' is presented.
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Release | : 1986 |
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Release | : 1988 |
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Analytic method is used to analyze the tracking results for the AGS-BOOSTER lattice. We found the amplitude dependence of the tune is very important in understanding characteristic of the tracking result. With the perturbed tune, the effective second order perturbation theory work very well. The method can be used to analyze the optimized operational condition for the lattice. For the Booster, the analysis suggests that chromaticity of -2 and -5 and a minimum unperturbed tune split chemically bond[Delta][nu]°chemically bond> 0.01. At the zero chromaticity point, the required unperturbed tune split is considerably larger in order to obtain a similar performance. 7 refs., 4 figs.
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Release | : 1986 |
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Total Pages | : 484 |
Release | : 1994-02 |
Genre | : Power resources |
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Author | : Eric R. Lindstrom |
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Total Pages | : 712 |
Release | : 1987 |
Genre | : Nuclear engineering |
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Release | : 1987 |
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We have developed an analytical method for examining the nonlinear effects in accelerators including the Hamiltonian resonance strengths, generating functions resonance strengths, fixed points, Chirikov Criteria, island width, perturbation of tune, emittance growth, etc. We incorporated some of our findings into an algorithm which we used to investigate the structure resonances in the SSC and the AGS-Booster.
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Release | : 1998 |
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Total Pages | : 4 |
Release | : 1988 |
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