Publication | Closed Access
High-field magnetization of (Cd,Mn)Te
47
Citations
12
References
1987
Year
Magnetic PropertiesEngineeringLow-dimensional MagnetismSpin SystemsMagnetic ResonanceOne-dimensional MagnetismSpin DynamicMagnetic MaterialsMagnetoresistanceHigh-field MagnetizationMagnetismQuantum MaterialsPart IncreasesPhysicsLow-dimensional SystemsAntiferromagnetismMagnetic MaterialQuantum MagnetismSpintronicsFerromagnetismNatural SciencesCondensed Matter PhysicsApplied PhysicsRandom NetworkPart LinearMagnetic Property
The magnetization of the diluted antiferromagnetic system ${\mathrm{Cd}}_{1\mathrm{\ensuremath{-}}\mathrm{x}}$${\mathrm{Mn}}_{\mathrm{x}}$Te with 0.1\ensuremath{\le}x\ensuremath{\le}0.5 is examined up to fields of 40 T at liquid-helium temperature. The measured magnetization can be separated into the sum of two components: a paramagnetic Brillouin-type part that saturates by B=15 T, and a part linear in B. This separation only becomes evident at fields above 20 T. For increasing x, the ratio of the linear part to the saturating part increases. These characteristics appear to be universal for similar dilute systems, and are a consequence of the spin-spin coupling in small isolated clusters and the random network.
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