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Perturbation theory of the non-linear optical polarization of an isolated system

Molecular Physics · 1971 · Vol. 20(3) · pp. 513–526
Brian J. OrrJohn F. Ward

Abstract

The non-linear optical polarization of an isolated atom or molecule is treated, giving careful consideration to secular and resonant terms in the perturbation expansion. The Method of Averages introduced by Bogoliubov and Mitropolsky is used. The case where resonance-induced excited state populations are negligible, which is relevant to a wide range of non-linear optical experiments, is examined in detail for polarizations through third order in the perturbing fields. This yields concise expressions which are valid for any combination of applied field frequencies, including static fields.

Photorefractive and Nonlinear OpticsQuantum optics and atomic interactionsPhotonic and Optical DevicesPolarization (electrochemistry)Perturbation (astronomy)PhysicsExcited stateLinear molecular geometryLinear polarizationPerturbation theory (quantum mechanics)Linear systemQuantum mechanicsAtomic physics
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References
<i>The Principles of Quantum Mechanics</i>
Physics Today · 1958 · 5,198 citations
Interactions between Light Waves in a Nonlinear Dielectric
Physical Review · 1962 · 4,242 citations
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