A multiobjective genetic algorithm is developed for optimizing nonlinearities in diffraction limited storage rings. This algorithm determines sextupole and octupole strengths for chromaticity correction that deliver optimized dynamic aperture and beam lifetime. The algorithm makes use of dominance constraints to breed desirable properties into the early generations. The momentum aperture is optimized indirectly by constraining the chromatic tune footprint and optimizing the off-energy dynamic aperture. The result is an effective and computationally efficient technique for correcting chromaticity in a storage ring while maintaining optimal dynamic aperture and beam lifetime
The MAX IV facility currently under construction in Lund, Sweden will include a 1.5 GeV storage ring...
[[abstract]]This paper proposes a new method for finding a suitable glass combination set for an adv...
The goal of this project is to investigate the performance of the Genetic Algorithms (GA) and the in...
A multiobjective genetic algorithm is developed for optimizing nonlinearities in diffraction limited...
Finding a high quality of lattice that simultaneously meets low beam emittance performance and accep...
A lattice for the PEP-X ultimate storage ring light source, having 11 pm-rad natural emittance at a ...
The performance of the 3th generation light sources relies on the beam lifetime and the injection ef...
The performance of the 3th generation light sources relies on the beam lifetime and the injection ef...
The genetic algorithm (GA) has been a popular technique in optimizing the design of particle acceler...
With the aid of machine learning techniques, the genetic algorithm has been enhanced and applied to ...
The MAX IV facility currently under construction in Lund, Sweden will include a 1.5 GeV storage ring...
This paper reports the application of Multi-Objective Genetic Algorithms (MOGA) to optimize the line...
The genetic algorithm (GA) has been a popular technique in optimizing the design of particle acceler...
This paper uses the advanced light source (ALS) storage-ring lattice as an example to illustrate the...
We propose to optimize the nonlinear beam dynamics of existing and future storage rings with direct ...
The MAX IV facility currently under construction in Lund, Sweden will include a 1.5 GeV storage ring...
[[abstract]]This paper proposes a new method for finding a suitable glass combination set for an adv...
The goal of this project is to investigate the performance of the Genetic Algorithms (GA) and the in...
A multiobjective genetic algorithm is developed for optimizing nonlinearities in diffraction limited...
Finding a high quality of lattice that simultaneously meets low beam emittance performance and accep...
A lattice for the PEP-X ultimate storage ring light source, having 11 pm-rad natural emittance at a ...
The performance of the 3th generation light sources relies on the beam lifetime and the injection ef...
The performance of the 3th generation light sources relies on the beam lifetime and the injection ef...
The genetic algorithm (GA) has been a popular technique in optimizing the design of particle acceler...
With the aid of machine learning techniques, the genetic algorithm has been enhanced and applied to ...
The MAX IV facility currently under construction in Lund, Sweden will include a 1.5 GeV storage ring...
This paper reports the application of Multi-Objective Genetic Algorithms (MOGA) to optimize the line...
The genetic algorithm (GA) has been a popular technique in optimizing the design of particle acceler...
This paper uses the advanced light source (ALS) storage-ring lattice as an example to illustrate the...
We propose to optimize the nonlinear beam dynamics of existing and future storage rings with direct ...
The MAX IV facility currently under construction in Lund, Sweden will include a 1.5 GeV storage ring...
[[abstract]]This paper proposes a new method for finding a suitable glass combination set for an adv...
The goal of this project is to investigate the performance of the Genetic Algorithms (GA) and the in...