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Journal ArticleDOI

Bound magnetic polaron hopping and giant magnetoresistance in magnetic semiconductors and nanostructures

Andre Petukhov, +1 more
- 01 Jul 2000 - 
- Vol. 62, Iss: 1, pp 520-531
TLDR
In this paper, a theory of bound magnetic polaron (BMP) hopping, driven by thermodynamic fluctuations of the local magnetization, has been developed based on a two-site model of the BMP.
Abstract
A theory of bound magnetic polaron (BMP) hopping, driven by thermodynamic fluctuations of the local magnetization, has been developed. It is based on a two-site model of the BMP. The BMP hopping probability rate was calculated in the framework of the ``golden rule'' approach by using the Ginzburg-Landau effective Hamiltonian method. The theory explains the main features of the hopping resistivity observed in a variety of experiments in dilute magnetic semiconductors and magnetic nanocomposites, namely, (a) the negative giant magnetoresistance, the scale of which is governed by a magnetic polaron localization volume, and (b) the low-magnetic-field positive magnetoresistance which usually precedes the negative magnetoresistance. It is shown that the positive magnetoresistance is a signature of the fluctuation-driven bound magnetic polaron hopping. This effect is related to the vector nature of the magnetic order parameter affected by the presence of the localized-electron spin.

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Positive magnetoresistance in ferromagnetic Nd-doped In2O3 thin films grown by pulse laser deposition

TL;DR: In this article, the magnetic and magnetotransport properties of (In0.985Nd0.015)2O2.89 thin films grown by pulse laser deposition were reported.
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Giant magnetoresistance in transition-metal-doped ZnO films

TL;DR: In this paper, anomalous magnetic and magnetic-related transport properties in transition-metal-doped ZnO films are discussed in terms of magnetic polarons, and a negative magnetoresistance of −95% at 2K and a positive MR of 48% at 10K were established in the films.
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Surface-mediated tunable self-assembly of single crystal semimetallic ErSb/GaSb nanocomposite structures.

TL;DR: This work reports a method for growing single crystal arrays of semimetallic vertical and horizontal ErSb nanorods, nanotrees, and nanosheets embedded within a semiconducting GaSb matrix and shows that the nanostructured composites form via a surface-mediated self-assembly mechanism that is controlled entirely at the growth front and is not a product of bulk diffusion or bulk segregation.
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Magnetoresistance of Manganese-Doped Colloidal Quantum Dot Films

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Giant negative magnetoresistance of spin polarons in magnetic semiconductors–chromium-doped Ti2O3 thin films

TL;DR: In this article, a large applied field quenches the spin polarons and p is reduced to 0.5 in zero field, where p = 0.25 expected for lattice polarons.
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