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Localization length in anderson insulator with Kondo impurities
1I. Institut für Theoretische Physik, Universität Hamburg, Hamburg 20355, Germany.
The localization length in 2D Anderson insulators is affected by magnetic impurities and Kondo correlations. A critical impurity concentration prevents unitary localization, leading to reentrant behavior and giant magnetoresistance.
Area of Science:
- Condensed matter physics
- Quantum mechanics
- Materials science
Background:
- Anderson insulators exhibit electron localization due to disorder.
- Electron spin scattering by magnetic impurities influences localization length.
- Kondo correlations introduce a feedback mechanism between scattering time and localization length.
Purpose of the Study:
- To investigate the impact of magnetic impurities and Kondo correlations on electron localization in 2D Anderson insulators.
- To determine the conditions for unitary localization and explore its dependence on impurity concentration and conductance.
- To analyze the effect of a parallel magnetic field on Kondo correlations and magnetoresistance.
Main Methods:
- Theoretical analysis of electron localization in disordered systems.
- Modeling of spin scattering by magnetic impurities with antiferromagnetic exchange.
- Investigation of Kondo correlations and their dependence on localization length.
- Calculation of the dependence of localization length on dimensionless conductance.
- Analysis of the influence of a parallel magnetic field.
Main Results:
- Unitary localization is impossible below a critical magnetic impurity concentration (n(c)).
- For concentrations above n(c), the localization length exhibits reentrant behavior with increasing conductance, transitioning between unitary and orthogonal regimes.
- Kondo correlations are sensitive to weak parallel magnetic fields, leading to giant parallel magnetoresistance.
Conclusions:
- The interplay between magnetic impurities, Kondo correlations, and disorder dictates electron localization properties in 2D systems.
- A critical threshold of magnetic impurity concentration is necessary for observing specific localization behaviors.
- Giant magnetoresistance effects can arise from the field sensitivity of Kondo correlations in these systems.
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