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Optical spin orientation of a single manganese atom in a quantum dot
Authors:L. Besombes  C. Le Gall  H. Boukari  R. Kolodka  D. Ferrand  J. Cibert  H. Mariette
Affiliation:1. Ural Division, Institute of Metal Physics, Russian Academy of Sciences, Yekaterinburg 620990, Russia;2. Department of Chemistry and Biochemistry, Loyola Marymount University, Los Angeles, CA 90045, USA;3. Ural Division, Institute of Electrophysics, Russian Academy of Sciences, Yekaterinburg 620016, Russia;4. Ural Federal University, Yekaterinburg 620000, Russia
Abstract:The magnetic state of a single magnetic atom (Mn) embedded in an individual semiconductor quantum dot is optically probed using micro-spectroscopy. A high degree of spin polarization can be achieved for an individual Mn atom localized in a quantum dot using quasi-resonant or fully-resonant optical excitation at zero magnetic field. Optically created spin polarized carriers generate an energy splitting of the Mn spin and enable magnetic moment orientation controlled by the photon helicity and energy. The dynamics and the magnetic field dependence of the optical pumping mechanism shows that the spin lifetime of an isolated Mn atom at zero magnetic field is controlled by a magnetic anisotropy induced by the built-in strain in the quantum dots. The Mn spin distribution prepared by optical pumping is fully conserved for a few microseconds. This opens the way to full optical control of the spin state of an individual magnetic atom in a solid state environment.
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