Optical manipulation of a single Mn spin in a CdTe-based quantum dot

Two coupled CdTe quantum dots, selected from a self-assembled system, one of them containing a single Mn ion, were studied by continuous wave and modulated photoluminescence, photoluminescence excitation, and photon correlation experiments. Optical writing of information on the spin state of the Mn...

Full description

Saved in:
Bibliographic Details
Published inPhysical review letters Vol. 103; no. 8; p. 087401
Main Authors Goryca, M, Kazimierczuk, T, Nawrocki, M, Golnik, A, Gaj, J A, Kossacki, P, Wojnar, P, Karczewski, G
Format Journal Article
LanguageEnglish
Published United States 21.08.2009
Online AccessGet more information

Cover

Loading…
More Information
Summary:Two coupled CdTe quantum dots, selected from a self-assembled system, one of them containing a single Mn ion, were studied by continuous wave and modulated photoluminescence, photoluminescence excitation, and photon correlation experiments. Optical writing of information on the spin state of the Mn ion has been demonstrated, using the orientation of the Mn spin by spin-polarized carriers transferred from the neighboring quantum dot. Mn spin orientation time values from 20 to 100 ns were measured, depending on the excitation power. Storage time of the information on the Mn spin was found to be enhanced by application of a static magnetic field of 1 T, reaching hundreds of microseconds in the dark. Simple rate equation models were found to describe correctly the static and dynamical properties of the system.
ISSN:0031-9007
DOI:10.1103/physrevlett.103.087401