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- W1494748326 abstract "This chapter describes the optical properties of diluted magnetic semiconductor (DMS) quantum wells (QWs), and presents the nanostructures fabricated by electron-beam lithography. It also covers the properties of self-assembled quantum dots, and presents the hybrid nanostructures involving ferromagnetic materials. The transient optical processes in DMS-QWs involve various interesting spin dynamics of electron-hole plasma, excitons, and local spins of the magnetic ions. To distinguish each spin dynamics that appears in an ultrashort time range, the technique of transient pump-probe absorption spectroscopy performed under magnetic fields has been developed. The characteristic optical properties such as the giant Zeeman effects of excitons, and the giant Faraday rotation in II-VI DMSs, are attractive for applications in magneto-optical devices operating in the visible light region; an optical isolator operating at room temperature has already been developed. In addition, spin-polarized carriers can be generated in DMSs due to the giant Zeeman splitting of their electronic states." @default.
- W1494748326 created "2016-06-24" @default.
- W1494748326 creator A5083879113 @default.
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- W1494748326 date "2019-11-15" @default.
- W1494748326 modified "2023-10-16" @default.
- W1494748326 title "Optical Properties and Spin Dynamics of Diluted Magnetic Semiconductor Nanostructures" @default.
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- W1494748326 doi "https://doi.org/10.1002/9781119506003.ch19" @default.
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