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CONDENSED MATTER
Dynamic spin phenomena in complex structures based on ferromagnetic metals and semiconductors (scientific summary)
N. V. Agrinskaya, V. I. Kozub, A. V. Shumilin Ioffe Institute, Russian Academy of Sciences, St. Petersburg, 194021 Russia
Abstract:
A brief review of theoretical and experimental studies of spin phenomena in various hybrid structures based on magnetically ordered metals and semiconductors is presented. In particular, the following issues are addressed: (i) the effects of electrically driven switching of the magnetization with the minimum energy loss; (ii) ferromagnetic ordering in Mn-doped GaAs-AlGaAs quantum wells, which is stimulated by filling the upper Hubbard band; (iii) the analytical and numerical studies of magnetic excitations in nanocomposites formed by ferromagnetic granules; (iv) theoretical studies of spin effects in strongly disordered semiconductor structures; and (v) isotropic magnetoresistance linear in the magnetic field, experimentally observed in GaAs-AlGaAs doped quantum wells, which is attributed to some ordering in the system of localized spins.
Received: 22.08.2019 Revised: 29.08.2019 Accepted: 29.08.2019
Citation:
N. V. Agrinskaya, V. I. Kozub, A. V. Shumilin, “Dynamic spin phenomena in complex structures based on ferromagnetic metals and semiconductors (scientific summary)”, Pis'ma v Zh. Èksper. Teoret. Fiz., 110:7 (2019), 482–492; JETP Letters, 110:7 (2019), 495–504
Linking options:
https://www.mathnet.ru/eng/jetpl6017 https://www.mathnet.ru/eng/jetpl/v110/i7/p482
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Abstract page: | 139 | Full-text PDF : | 30 | References: | 44 | First page: | 1 |
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