Publication Details
Abstract
Electromagnetic lenses are dependent upon a specific rely on a specific procedure of magnetic fields which focus on beams of charged particles and make their plan technically tedious and demanding efficient numerical models. This specific study attempts to assess the efficiency of dual prominent models for the depiction of magnetic field within lenses, the Gaussian model and the Glaser model, to determine which of the models is suitable for high-sensitivity scientific usages. MATLAB was used to carry out quantitative simulations of each model and analyse the axial magnetic domain spread in a good electromagnetic lens. The outcomes displayed that the assumed Gaussian model produces a clear and balanced field spreading, to render it suitable for accuracy usages. The Glaser framework shows improved adaptability to depict non-balance distributions, which makes it appropriate for difficult experimentation conditions.This comparison exemplifies that the choice of a mathematical model should be dependent on the features of the usage and the plan specifications. This study suggests the application of Gaussian model for schemes that are proportioned around a distinct axis and the Glaser framework that need appropriate domain adjustments with the potential of integrating both models in an advanced simulation for great adjustments and the need to provide accuracy and efficacy.