This book focuses on the main aspects of electron and nuclear spin dynamics in semiconductor nanostructures. It summarizes main results of theoretical and experimental studies of interactions in spin systems, effects of ultrafast spin manipulation by light, phenomena of spin losses, and the physics of the omnipresent spin noise.
This book focuses on the main aspects of electron and nuclear spin dynamics in semiconductor nanostructures. It summarizes main results of theoretical and experimental studies of interactions in spin systems, effects of ultrafast spin manipulation by light, phenomena of spin losses, and the physics of the omnipresent spin noise.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
M. M. Glazov graduated from the Polytechnical University (St.-Petersburg, Russia) in 2005, after defence of his master of physics thesis on effects of electron-electron interactions on spin relaxation in semiconductors. He obtained a PhD in semiconductor physics at Ioffe Institute 2008 after defending the thesis "Spin dynamics of electrons and excitons in quantum wells and quantum dots", and defended the Habilitation (Doctor of Sciences in Russia) "Spin and kinetic phenomena in nanostructures and graphene" in 2012 also at Ioffe Institute. In 2016, Mikhail was elected as a corresponding member to Russian Academy of Sciences. His research interests include theory of spin effects in semiconductors, physics of two-dimensional materials and light-matter coupling effects.
Inhaltsangabe
* 1: Introduction * 2: Spin systems in semiconductor nanostructures * 3: Spin resonance * 4: Hyperfine interaction of electron and nuclear spins * 5: Dynamical nuclear polarizaion * 6: Interaction of spins with light * 7: Electron spin decoherence by nuclei * 8: Electron spin relaxation beyond hyperfine interaction * 9: Electron spin precession mode-locking and nuclei-induced frequency focussing * 10: Fluctuations of electron and nuclear spins * 11: Strong coupling of electron and nuclear spins: outlook and prospects * Appendix A: Irreducible representations of relevant point groups * Appendix B: Outline of the kp-method
* 1: Introduction * 2: Spin systems in semiconductor nanostructures * 3: Spin resonance * 4: Hyperfine interaction of electron and nuclear spins * 5: Dynamical nuclear polarizaion * 6: Interaction of spins with light * 7: Electron spin decoherence by nuclei * 8: Electron spin relaxation beyond hyperfine interaction * 9: Electron spin precession mode-locking and nuclei-induced frequency focussing * 10: Fluctuations of electron and nuclear spins * 11: Strong coupling of electron and nuclear spins: outlook and prospects * Appendix A: Irreducible representations of relevant point groups * Appendix B: Outline of the kp-method
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