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Influence of nonmagnetic impurity scattering on spin dynamics in diluted magnetic semiconductors

Cygorek, M. et al · American Physical Society · 2017

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Summary

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The doping of semiconductors with magnetic impurities gives rise not only to a spin-spin interaction between quasifree carriers and magnetic impurities but also to a local spin-independent disorder potential for the carriers. Based on a quantum kinetic theory for the carrier and impurity density matrices as well as the magnetic and nonmagnetic carrier-impurity correlations, the influence of the nonmagnetic scattering potential on the spin dynamics in DMS after optical excitation with circularly polarized light is investigated using the example of Mn-doped CdTe. It is shown that non-Markovian effects, which are predicted in calculations where only the magnetic carrier-impurity interaction is accounted for, can be strongly suppressed in the presence of nonmagnetic impurity scattering. This effect can be traced back to a significant redistribution of carriers in k-space which is enabled by the build-up of large carrier-impurity correlation energies. A comparison with the Markov limit of the quantum kinetic theory shows that, in the presence of an external magnetic field parallel to the initial carrier polarization, the asymptotic value of the spin polarization at long times is significantly different in the quantum kinetic and the Markovian calculations. This effect can also be attributed to the formation of strong correlations, which invalidates the semiclassical Markovian picture and it is stronger when the nonmagnetic carrier-impurity interaction is accounted for. In an external magnetic field perpendicular to the initial carrier spin, the correlations are also responsible for a renormalization of the carrier spin precession frequency. Considering only the magnetic carrier-impurity interaction, a significant renormalization is predicted for a very limited set of material parameters and excitation conditions. Accounting also for the nonmagnetic interaction, a relevant renormalization of the precession frequency is found to be more ubiquitous. Fil: Cygorek, M.. University of Bayreuth; Alemania Fil: Ungar, F.. University of Bayreuth; Alemania

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APA 7

Cygorek, M. E. A. (2017). Influence of nonmagnetic impurity scattering on spin dynamics in diluted magnetic semiconductors. http://hdl.handle.net/11336/49306

MLA

Cygorek, M. et al. "Influence of nonmagnetic impurity scattering on spin dynamics in diluted magnetic semiconductors." 2017. http://hdl.handle.net/11336/49306.

Chicago

Cygorek, M. et al. 2017. "Influence of nonmagnetic impurity scattering on spin dynamics in diluted magnetic semiconductors.". http://hdl.handle.net/11336/49306.

Harvard

Cygorek, M. E. A. 2017, Influence of nonmagnetic impurity scattering on spin dynamics in diluted magnetic semiconductors, American Physical Society, available at: http://hdl.handle.net/11336/49306 [Accessed 8 Aug. 2026].

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Title
Influence of nonmagnetic impurity scattering on spin dynamics in diluted magnetic semiconductors
Author / contributors
Cygorek, M. et al
Publisher
American Physical Society
Publication year
2017
ISSN
1098-0121
ISSN
1098-0121
Language
English

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