Please use this identifier to cite or link to this item: http://idr.niser.ac.in:8080/jspui/handle/123456789/1162
Title: Effect of inter-particle interactions in magnetic nanoparticle ensembles
Authors: Bedanta, Subhankar
Keywords: DOMAIN DYNAMICS
INTER-LAYER COUPLING
INTERPARTICLE INTERACTIONS
MAGNETIC NANOPARTICLES
SUPERFERROMAGNETISM
SUPERPARAMAGNETISM
SUPERSPIN GLASS
Issue Date: Nov-2013
Publisher: Sensor Letters
Citation: Bedanta, S., Chowdhury, N., & Kleemann, W. (2013). Effect of inter-particle interactions in magnetic nanoparticle ensembles. Sensor Letters, 11(11), 2030–2037.
Abstract: Ensembles of single domained ferromagnetic (FM) nanoparticles, in which magnetic interparticle interactions are sufficiently weak, show superparamagnetic (SPM) behavior. However, at increased interactions the system eventually shows collective behavior, which overcomes the individual anisotropy properties of the particles. Different collective states of magnetism were first recognized on so-called discontinuous magnetic metal-insulator multilayers (DMIMs) consisting of focused ionbeam grown Co80Fe20 nanoparticles on glassy Al2O3. At sufficiently small interparticle distances as controlled by the nominal Co80Fe20 film thickness, 0.5 nm < tn < 1.1 nm, dipolar interaction enables superspin glass (SSG) properties. At increased concentration, but still below physical percolation, 1.1 nm < tn < 1.3 nm, stronger interactions give rise to superferromagnetic (SFM) states with domain formation similar to that in conventional FM films. At t n > 1.3 nm the metal-insulator multilayers (MIMs) become continuous owing to physical interparticle percolation. Owing to inherent layer roughness competing ANNNI-type dipolar interactions give rise to layer-by-layer magnetization reversal as evidenced by domain imaging performed by magneto-optical Kerr effect microscopy.
URI: https://doi.org/10.1166/sl.2013.3059
http://idr.niser.ac.in:8080/jspui/handle/123456789/1162
Appears in Collections:Journal Papers

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