Spin waves in magnetic quantum wells with Coulomb interaction and exchange coupling
arXiv:1011.4422 · doi:10.1103/PhysRevB.83.075311
Abstract
We theoretically describe the spin excitation spectrum of a two dimensional electron gas embedded in a quantum well with localized magnetic impurities. Compared to the previous work, we introduce equations that allow to consider the interplay between the Coulomb interaction of delocalized electrons and the exchange coupling between electrons and magnetic impurities. Strong qualitative changes are found : mixed waves propagate below the single particle continuum, an anticrossing gap is open at a specific wavevector and the kinetic damping due to the electron motion strongly influences the coupling strength between electrons and impurities spins.
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Cited by in corpus (6)
- Influence of non-magnetic impurity scattering on the spin dynamics in diluted magnetic semiconductors
- Chirality and intrinsic dissipation of spin modes in two-dimensional electron liquids
- Carrier-impurity spin transfer dynamics in paramagnetic II-VI diluted magnetic semiconductors in the presence of a wave-vector-dependent magnetic field
- Spin waves in diluted magnetic quantum wells
- Theory of carrier-mediated magnonic superlattices
- Spin precession and spin waves in a chiral electron gas: beyond Larmor's theorem