Publication | Closed Access
Raman Scattering by Coupled-Layer Plasmons and In-Plane Two-Dimensional Single-Particle Excitations in Multi-Quantum-Well Structures
184
Citations
18
References
1986
Year
Categoryquantum ElectronicsCharge ExcitationsEngineeringSurface-enhanced Raman ScatteringRaman MeasurementsElectron SpectroscopyOptical PropertiesQuantum MaterialsElectron LayersNanophotonicsPhotonicsQuantum SciencePhysicsCoupled-layer PlasmonsCondensed Matter TheoryDiscrete Layer-plasmon ModesSolid-state PhysicPlasmonicsApplied PhysicsCondensed Matter PhysicsMulti-quantum-well Structures
Raman measurements are reported of collective modes (plasmons) and single-particle excitations in modulation-doped $\mathrm{Ga}\frac{\mathrm{As}}{{\mathrm{Al}}_{x}}{\mathrm{Ga}}_{1\ensuremath{-}x}\mathrm{As}$ quantum-well systems as a function of the wave-vector component ${k}_{\ensuremath{\parallel}}$ parallel to the electron layers. Samples with five layers show discrete layer-plasmon modes manifesting the coupling of the electrons in different layers by Coulomb interaction. The Raman spectra due to single-particle excitations are narrow bands peaking at $\overline{h}{k}_{\ensuremath{\parallel}}{v}_{\mathrm{F}}^{2\mathrm{D}}$ characteristic for the response of a 2D electron gas.
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