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INP

INP Programs described here are Special Scientific Software Tools.

KOBRA3-INP
3D simulation for particle sources and beam transport, including plasma models and
secondary particles. No symmetry restrictions.

AXCEL-INP
2D simulation for particle sources and beam transport. Ion sources including ECR ion source
laser ion source and electron gun etc..

MAGNET-INP
2D computation of magnetic field. Biot savart method(Integration) is used for exact field
calculation. Output suitable for KOBRA3-INP and AXCEL-INP.

DOT-INP
2D temperature calculation. Static and transient solution.

Interface Program
2D temperature calculation. Static and transient solution.

Examples for technical processes are:


KOBRA3-INP

KOBRA INP is a so called Vlasov solver. That includes the solution of the Poisson equation and the solution of a particle distribution function which influence itself the Poisson equation. The space charge map is created during the ray tracing. Therefore the actual space charge map belongs always to the previous potential map. The self consistent particle distribution is found by an iterative process.


AXCEL-INP

2D with planar or axial symmetry
Poisson Solver
Import of arbitrary magnetic field
Discretization (number of nodes) restricted by memory only
Different charge states simultaneously
Space charge effects included
Space charge compensation effects included
Plasma model for positive ions included
Graphic output/Analysis of results
2D plot of geometry, potentials, fields, and trajectories
Emittance plot


MAGNET-INP
2D with planar or axial symmetry
Biot Savart Solver
Iron can be included (infinite permeability)
Discretization (number of nodes) restricted by memory only
Graphic output/Analysis of results

DOT-INP
2D with planar or axial symmetry
Steady state and transient solution
Finite Element Solver
Discretization (number of nodes) restricted by memory only
Graphic output/Analysis of results