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- W2080321063 endingPage "3577" @default.
- W2080321063 startingPage "3567" @default.
- W2080321063 abstract "The one-electron, self-consistent-field formalism for harmonic generation is presented. The solution is expanded in a Fourier series, assuming that the time-dependent perturbation is weak. The equations of harmonic response form a set of inhomogeneous Schrodinger equations which, if solved order by order, are coupled only through self-consistent-field effects. Special attention is paid to the case of second-harmonic generation in crystalline semiconductors with a longitudinal field present. The f-sum rule for crystals is exploited to eliminate certain terms which apparently diverge as ${mathrm{ensuremath{omega}}}^{mathrm{ensuremath{-}}2}$, in perfect analogy to the linear-response theory. Additionally, terms which are in the form of numerical first-, second-, and third-order finite differences of the frequency are combined into numerically superior forms." @default.
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- W2080321063 date "1990-08-15" @default.
- W2080321063 modified "2023-10-09" @default.
- W2080321063 title "One-electron formalism for second-harmonic generation in crystalline semiconductors" @default.
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- W2080321063 doi "https://doi.org/10.1103/physrevb.42.3567" @default.
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