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Improving nonlinear performance of the HEPS baseline design with a genetic algorithm 被引量:4

Improving nonlinear performance of the HEPS baseline design with a genetic algorithm
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摘要 A baseline design for the High Energy Photon Source has been proposed, with a natural emittance of 60 pm.rad within a circumference of about 1.3 kilometers. Nevertheless, the nonlinear performance of the design needs further improvements to increase both the dynamic aperture and the momentum acceptance. In this study, genetic optimization of the linear optics is performed, so as to find all the possible solutions with weaker sextupoles and hence weaker nonlinearities, while keeping the emittance at the same level as the baseline design. The solutions obtained enable us to explore the dependence of nonlinear dynamics on the working point. The result indicates that with the same layout, it is feasible to obtain much better nonlinear performance with a delicate tuning of the magnetic field strengths and a wise choice of the working point. A baseline design for the High Energy Photon Source has been proposed, with a natural emittance of 60 pm.rad within a circumference of about 1.3 kilometers. Nevertheless, the nonlinear performance of the design needs further improvements to increase both the dynamic aperture and the momentum acceptance. In this study, genetic optimization of the linear optics is performed, so as to find all the possible solutions with weaker sextupoles and hence weaker nonlinearities, while keeping the emittance at the same level as the baseline design. The solutions obtained enable us to explore the dependence of nonlinear dynamics on the working point. The result indicates that with the same layout, it is feasible to obtain much better nonlinear performance with a delicate tuning of the magnetic field strengths and a wise choice of the working point.
作者 焦毅
出处 《Chinese Physics C》 SCIE CAS CSCD 2016年第7期153-157,共5页 中国物理C(英文版)
基金 Supported by NSFC(11475202,11405187) Youth Innovation Promotion Association CAS(2015009)
关键词 High Energy Photon Source nonlinear performance working point genetic optimization High Energy Photon Source, nonlinear performance, working point, genetic optimization
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