The Zeeman splitting and the underlying value of the g-factor for conduction band electrons in GaAs/Al_xGa_{1-x}As quantum wells have been measured by spin-beat spectroscopy based on a time-resolved Kerr rotation technique. The experimental data are in good agreement with theoretical predictions. The model accurately accounts for the large electron energies above the GaAs conduction band bottom, resulting from the strong quantum confinement. In the tracked range of optical transition energies E from 1.52 to 2.0eV, the electron g-factor along the growth axis follows closely the universal dependence g_||(E)= -0.445 + 3.38(E-1.519)-2.21(E-1.519)^2 (with E measured in eV); and this universality also embraces Al_xGa_{1-x}As alloys. The in-plane ...
Quantum confined holes in GaAs offer the possibility of electrical spin manipulation via the spin-or...
We measure simultaneously the in-plane electron g factor and spin-relaxation rate in a series of und...
We investigate theoretically the Zeeman effect on the lowest confined electron in quantum wires and ...
The magnitude and sign of the effective magnetic splitting factor g* for conduction electrons in GaA...
The electron effective g factor tensor in asymmetric III-V semiconductor quantum wells (AQWs) and it...
The ability to preferentially spin-polarise a photoexcited carrier population in a quantum well by o...
Spin quantum beats are detected in GaAs/Al subx Ga sub1-x As quantum wells in a magnetic field perpe...
We demonstrate by spin quantum beat spectroscopy that in undoped symmetric (110)-oriented GaAs/AlGaA...
Due to its p-like character, the valence band in GaAs-based heterostructures offers rich and complex...
Due to its p-like character, the valence band in GaAs-based heterostructures offers rich and complex...
The influence of quantum confinement and built-in strain on conduction-electron g factors in lattice...
A circularly polarized magneto-photoluminescence (magneto-PL) technique has been applied to investig...
We report on the study of the linear and circular magnetogyrotropic photogalvanic effect (MPGE) in G...
We report measurements of the electron g-factor in InSb quantum wells using the coincidence techniqu...
A theory for the electron (and hole) g factor in multivalley lead-salt IV-VI semiconductor quantum w...
Quantum confined holes in GaAs offer the possibility of electrical spin manipulation via the spin-or...
We measure simultaneously the in-plane electron g factor and spin-relaxation rate in a series of und...
We investigate theoretically the Zeeman effect on the lowest confined electron in quantum wires and ...
The magnitude and sign of the effective magnetic splitting factor g* for conduction electrons in GaA...
The electron effective g factor tensor in asymmetric III-V semiconductor quantum wells (AQWs) and it...
The ability to preferentially spin-polarise a photoexcited carrier population in a quantum well by o...
Spin quantum beats are detected in GaAs/Al subx Ga sub1-x As quantum wells in a magnetic field perpe...
We demonstrate by spin quantum beat spectroscopy that in undoped symmetric (110)-oriented GaAs/AlGaA...
Due to its p-like character, the valence band in GaAs-based heterostructures offers rich and complex...
Due to its p-like character, the valence band in GaAs-based heterostructures offers rich and complex...
The influence of quantum confinement and built-in strain on conduction-electron g factors in lattice...
A circularly polarized magneto-photoluminescence (magneto-PL) technique has been applied to investig...
We report on the study of the linear and circular magnetogyrotropic photogalvanic effect (MPGE) in G...
We report measurements of the electron g-factor in InSb quantum wells using the coincidence techniqu...
A theory for the electron (and hole) g factor in multivalley lead-salt IV-VI semiconductor quantum w...
Quantum confined holes in GaAs offer the possibility of electrical spin manipulation via the spin-or...
We measure simultaneously the in-plane electron g factor and spin-relaxation rate in a series of und...
We investigate theoretically the Zeeman effect on the lowest confined electron in quantum wires and ...