Abstract

The computation of magnetic field generated by the permanent magnets (PM) in the multipole configuration in a cylindrical geometry has been carried out analytically and compared with the experimental measurements. It has been shown that the magnetic field intensity variation inside the cylindrical plasma chamber follows a power law functional form rather than the conventionally used exponential functional form. The measurement of magnetic field inside the cylindrical multicusp geometry has been performed using a Hall probe method with 3‐D motorized movement bench which shows excellent agreement with the analytical calculations. A detailed analytical computations of multi‐cusp magnetic field for the cylindrical geometry and its comparison with the conventional exponential functional form has been presented.

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