Electronic Raman Scattering in Nearly Antiferromagnetic Fermi Liquids

Abstract

A theory of electronic Raman scattering in nearly antiferromagnetic Fermi liquids is constructed using the phenomenological electron-electron interaction introduced by Millis, Monien, and Pines. The role of "hot spots" and their resulting signatures in the channel dependent Raman spectra is highlighted, and different scaling regimes are addressed. The theory is compared to Raman spectra taken in the normal state of overdoped Bi2Sr2CaCu2O8+δ, and it is shown that many features of the symmetry dependent spectra can be explained by the theory.

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