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Magnetized boxes for housing polarized spins in homogeneous fields

Journal of magnetic resonance. Bd. 204. H. 1. 2010 S. 37 - 49

Erscheinungsjahr: 2010

ISBN/ISSN: 1090-7807 ; 1096-0856 ; 0022-2364

Publikationstyp: Zeitschriftenaufsatz

Sprache: Englisch

Doi/URN: 10.1016/j.jmr.2010.01.017

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Inhaltszusammenfassung


We present novel types of permanently magnetized as well as current powered boxes built from soft-ferromagnetic materials. They provide shielded magnetic fields which are homogeneous within a large fraction of the enclosed volume, thus minimizing size, weight, and costs. For the permanently magnetized solutions, homogenization is achieved either by an optimized distribution of the permanent field sources or by jacketing the field with a soft-ferromagnetic cylindrical shell which is magnetized...We present novel types of permanently magnetized as well as current powered boxes built from soft-ferromagnetic materials. They provide shielded magnetic fields which are homogeneous within a large fraction of the enclosed volume, thus minimizing size, weight, and costs. For the permanently magnetized solutions, homogenization is achieved either by an optimized distribution of the permanent field sources or by jacketing the field with a soft-ferromagnetic cylindrical shell which is magnetized in parallel to the enclosed field. The latter principle may be applied up to fields of about 0.1 T. With fields of about 1 mT, such boxes are being used for shipping spin-polarized He-3 worldwide for MRI purposes. For current powered boxes, we present concepts and realizations of uniaxial and tri-axial shielded magnetic fields which are homogeneous on the level of 10(-4) within the entire shielded volume. This is achieved by inserting tightly fitting solenoids into a box from soft-magnetic material. The flexible triaxial solution suits in particular laboratory applications, e.g. for establishing a spin quantization axis. (C) 2010 Elsevier Inc. All rights reserved,» weiterlesen» einklappen

Autoren


Hiebel, S. (Autor)
Grossmann, T. (Autor)
Kiselev, D. (Autor)
Schmiedeskamp, J. (Autor)
Gusev, Y. (Autor)
Heil, Werner (Autor)
Krimmer, Jochen (Autor)
Otten, Ernst-Wilhelm (Autor)
Salhi, Zahir (Autor)

Klassifikation


DDC Sachgruppe:
Physik

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