Efficiency Of Optical Spin Injection And Spin Loss From A Diluted Magnetic Semiconductor Znmnse To Cdse Nonmagnetic Quantum Dots

PHYSICAL REVIEW B(2008)

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Abstract
Magneto-optical spectroscopy in combination with tunable laser spectroscopy is employed to study optical spin injection from a diluted magnetic semiconductor (DMS) ZnMnSe into nonmagnetic CdSe quantum dots (QDs). Observation of a DMS feature in the excitation spectra of the QD photoluminescence polarization provides clear evidence for optical spin-injection from the DMS to the QDs. By means of a rate equation analysis, the injected spin polarization is deduced to be about 32% at 5 T, decreasing from 100% before the injection. The observed spin loss is shown to occur during the spin injection process including crossing the heterointerfaces and energy relaxation within the QDs.
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Key words
quantum dot,natural sciences,condensed matter physics,spin polarization,rate equation,tunable laser
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