Spin orientation of a two-dimensional electron gas by a high-frequency electric field
classification
❄️ cond-mat.mes-hall
cond-mat.mtrl-sci
keywords
electronfieldspinelectricorientationexcitationhigh-frequencyquantum
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Coupling of spin states and space motion of conduction electrons due to spin-orbit interaction opens up possibilities for manipulation of the electron spins by electrical means. It is shown here that spin orientation of a two-dimensional electron gas can be achieved by excitation of the carriers with a linearly polarized high-frequency electric field. In (001)-grown quantum well structures excitation with in-plane ac electric field induces orientation of the electron spins along the quantum well normal, with the spin sign and the magnitude depending on the field polarization.
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