Effect of partial substitution of Tb on the spin reorientation of the Er2−xTbxFe14B system
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.347949
Reference7 articles.
1. Prediction of magnetic phase diagrams of selected (RxR’1−x)2Fe14B systems
2. Magnetic anisotropies and spin reorientations of R2Fe14B‐type compounds
3. Intrinsic magnetic properties of multicomponent Pr2-x-yRxR'yFe11.6Co2Al0.4B (R = Tb or Dy, R' = Nd and (x = 0.0, 0.2, y = 0.0, 0.5) compounds
4. Structural and magnetic properties of Tm2−xDyxFe14B and Tm2Fe14−xCoxB alloys systems
5. Multi‐ion crystal field analysis: Methodology and application to (ErxPr1−x)2Fe14B (invited)
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1. Search for canted spin arrangement in Er2− x Tb x Fe14B with Mössbauer spectroscopy;Nukleonika;2015-03-01
2. High-Field Magnetization Process and Crystalline Electric Field Interaction in Rare-Earth Permanent-Magnet Materials;Materials Science in Static High Magnetic Fields;2002
3. Successive spin reorientation and magnetostriction in (Er/sub 1-x/Tb/sub x/)/sub 2/Fe/sub 14/B;IEEE Transactions on Magnetics;2001-07
4. STRUCTURE AND MAGNETIC CHARACTERISTICS OF MULTICOMPONENT RARE EARTH-TRANSITION METAL MATERIALS BASED ON Neodymium-iron-boron ALLOYS;Magnetic and Superconducting Materials;2000-09
5. Spin-Reorientation and Magnetostriction in Highly Oriented (Er1-xTbx)2Fe14B;Journal of the Magnetics Society of Japan;1999
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