![]() The Electrostatics Solver of CST EMS is used to calculate the accelerating fields for static guns, or the deflecting electrostatic fields of beamsteering units in cathode ray tubes (CRT).ĬST EMS' Magnetostatics Solver pre-calculates the fields of various types of magnets - such as solenoids, dipoles, quadrupoles. This allows to simulate devices such as high power MW tubes. This solver takes care of space charge and self-magnetic as well as of relativistic effects when propagating particles for example through static or HF electromagnetic fields. The Particle in Cell (PIC) solver provides a self-consistent method for the transient simulation of particle dynamics. in time domain it integrates the total effect of such accelerator elements and delivers information like loss and kick factor. The Wake Field Solver calculates the fields created by a charged particle bunch travelling through 3D geometries, like cavities, bellows, etc. Space charge can be considered in gun mode. There are various emission models, including secondary emission, available. The Stationary Particle Tracking Solver enables the tracking of charged particles through electrostatic, magnetostatic and eigenmode fields. CST PS is based on the knowledge, research and development that went into the algorithms used in the MAFIA-4 simulation package.Īpplications include: Particle Sources, Accelerator Components, Electron Tubes and Wake Field Simulation. It is fully embedded in CST DESIGN ENVIRONMENT, thus benefitting from its intuitive modelling capabilities and powerful import interfaces. This software tool is based on the multi-purpose 3D EM modules in CST STUDIO SUITE™ such as the CST EM STUDIO® electro and magnetostatic solver. CST PARTICLE STUDIO® (CST PS) is a specialist tool for the fast and accurate analysis of charged particle dynamics in 3D electromagnetic fields.
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