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- W1520794503 abstract "This chapter discusses the quantum structures of II–VI diluted magnetic semiconductors (DMSs) and some advantages of an important fact concerning the II–VI DMSs that Mn substitutes the column-II cations as an isoelectronic impurity, as opposed to the acceptor character observed in III–V ones. Carrier-induced ferromagnetism in (Cd,Mn)Te QWs constitutes a model system for understanding the basic mechanisms of magnetic transition in DMSs. The interaction of electrons and holes with a single magnetic impurity in a quantum dot (QD)—an extreme limit for spintronics—is discussed. By controlling the charge state of the QD, it is possible to tune the magnetic behavior of the Mn atom. This opens the route to a single-spin memory in which the information digit would be stored on the spin state of an individual atom. A few examples of transport measurements in quantum DMS structures are presented. After the first results in these magnetotransport measurements, the next challenge would be to improve the electrical contacts to control and develop new transport properties in the II–VI quantum structures." @default.
- W1520794503 created "2016-06-24" @default.
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- W1520794503 date "2008-01-01" @default.
- W1520794503 modified "2023-09-25" @default.
- W1520794503 title "Chapter 7 Quantum Structures of II–VI Diluted Magnetic Semiconductors" @default.
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