Publication | Open Access
Resonant Enhancement of Inelastic Light Scattering in Strongly Correlated Materials
19
Citations
21
References
2004
Year
EngineeringExact SolutionRayleigh ScatteringPolariton DynamicOptical PropertiesResonant EnhancementQuantum MaterialsUltracold AtomJoint ResonanceMaterials SciencePhotonicsQuantum SciencePhysicsLight–matter InteractionBrillouin ScatteringApplied PhysicsWave ScatteringCondensed Matter PhysicsLight ScatteringDouble ResonanceDisordered Quantum System
We use dynamical mean field theory to find an exact solution for inelastic light scattering in strongly correlated materials such as those near a quantum-critical metal-insulator transition. We evaluate the results for q=0 (Raman) scattering and find that resonant effects can be quite large, and yield a double resonance, a significant enhancement of nonresonant scattering peaks, a joint resonance of both peaks when the incident photon frequency is on the order of U, and the appearance of an isosbestic point in all symmetry channels for an intermediate range of incident photon frequencies.
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