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A short magnet design with excellent magnetic field homogeneity is presented accordingly.
The magnetic field properties from magnet design were imported into the LFEIT model.
In an earlier paper we reported on a new septum magnet design with a magnetic flux filter [1].
Fe Sm alloys are intensively used in permanent magnet design, due to their high magnetic remanence.
It is important to know the critical current density dependence on the applied magnetic field (Jc B dependence) for the magnet design.
Therefore, the goal of the magnet design is to obtain a constant magnetic force density distribution inside the working volume.
In this scheme, permanent magnet strength is controlled depending on magnetization direction, and consequently the final permanent magnet design converges into permanent magnet segments having target discrete directions.
In the paper we describe the magnet design, techniques and setups used for the magnetic field measurement and the beam testing results.
In this paper the magnet design for a laboratory scale superconducting open gradient magnetic separator is presented.
The APPLE-II type magnetic structure of the undulator is a pure permanent magnet design and allows four different modes of operation: circular polarization, horizontal and vertical polarization, and linear polarization under various angles.
Nuclear magnetic resonance (NMR) and magnetic resonance imaging (MRI) at very low magnetic fields (0.05 20 mT) have gained interest due to the simple and portable magnet design and newly emerging applications outside of the usual laboratory setting.
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CEO of Professional Science Editing for Scientists @ prosciediting.com