JOURNAL ARTICLE

Metal-insulator transition in colossal magnetoresistance materials

V. N. SmolyaninovaX. C. XieFu‐Chun ZhangM. RajeswariR. L. GreeneS. Das Sarma

Year: 2000 Journal:   Physical review. B, Condensed matter Vol: 62 (5)Pages: 3010-3013   Publisher: American Physical Society

Abstract

We report on resistivity measurements in ${\mathrm{La}}_{0.67}{\mathrm{Ca}}_{0.33}{\mathrm{MnO}}_{3}$ and ${\mathrm{Nd}}_{0.7}{\mathrm{Sr}}_{0.3}{\mathrm{MnO}}_{3}$ thin films in order to elucidate the underlying mechanism for the colossal magnetoresistance behavior. The experimental results are analyzed in terms of quantum phase-transition ideas to study the nature of the metal-insulator transition in manganese oxides. Resistivity curves as functions of magnetization for various temperatures show the absence of scaling behavior expected in a continuous quantum phase transition, which leads us to conclude that the observed metal-insulator transition is most likely a finite temperature crossover phenomenon.

Keywords:
Colossal magnetoresistance Condensed matter physics Magnetoresistance Metal–insulator transition Electrical resistivity and conductivity Materials science Scaling Quantum phase transition Magnetization Phase transition Transition temperature Insulator (electricity) Physics Superconductivity Magnetic field Quantum mechanics

Metrics

20
Cited By
1.29
FWCI (Field Weighted Citation Impact)
15
Refs
0.77
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Magnetic and transport properties of perovskites and related materials
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
Advanced Condensed Matter Physics
Physical Sciences →  Physics and Astronomy →  Condensed Matter Physics
Theoretical and Computational Physics
Physical Sciences →  Physics and Astronomy →  Condensed Matter Physics

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