Nonlinear Dielectric Polarization in Optical Media

非谐性 极化(电化学) 离子键合 物理 凝聚态物理 电子 电介质 拉曼散射 非线性光学 拉曼光谱 光学 激光器 量子力学 离子 化学 物理化学
作者
D. A. Kleinman
出处
期刊:Physical Review [American Institute of Physics]
卷期号:126 (6): 1977-1979 被引量:2317
标识
DOI:10.1103/physrev.126.1977
摘要

The physical mechanisms which can produce second-order dielectric polarization are discussed on the basis of a simple extension of the theory of dispersion in ionic crystals. Four distinct mechanisms are described, three of which are related to the anharmonicity, second-order moment, and Raman scattering of the lattice. These mechanisms are strongly frequency dependent, since they involve ionic motions with resonant frequencies lower than the light frequency. The other mechanism is related to electronic processes of higher frequency than the light, and, therefore, is essentially flat in the range of the frequencies of optical masers. Since this range lies an order of magnitude higher than the ionic resonances, the fourth mechanism may be the dominant one. On the other hand, a consideration of the linear electro-optic effect shows that the lattice is strongly involved in this effect, and, therefore, may be very much less linear than the electrons. It is shown that the question of the mechanism involved in the second harmonic generation of light from strong laser beams may be settled by experiments which test the symmetry of the effect. The electronic mechanism is subject to further symmetry requirements beyond those for piezoelectric coefficients. In many cases, this would greatly reduce the number of independent constants describing the effect. In particular, for quartz and KDP there would be a single constant.

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