THEORETICAL-ANALYSIS OF THE SPATIAL PHASE-MATCHING LOCI FOR 2ND-HARMONIC GENERATION AND MULTIWAVE-MIXING INTERACTIONS

被引:4
作者
ZHANG, GJ [1 ]
HORINOUCHI, S [1 ]
KINOSHITA, T [1 ]
SASAKI, K [1 ]
机构
[1] KEIO UNIV,FAC SCI & TECHNOL,KOHOKU KU,YOKOHAMA,KANAGAWA 223,JAPAN
来源
APPLIED OPTICS | 1995年 / 34卷 / 24期
关键词
NONCOLLINEAR PHASE MATCHING; SECOND-HARMONIC GENERATION; CRYSTAL; MULTIWAVE MIXING; COLLINEAR PHASE MATCHING;
D O I
10.1364/AO.34.005301
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We report a theoretical analysis on spatial noncolinear phase matching of multiwave mixing and its application to a second-harmonic-generation (SHG) experiment. From the numeric calculations, the noncolinear phase-matching properties in general situations were determined. The theory gives the applicability for all noncolinear phase matching. Fine coincidences between theoretical calculations and observed spatial loci on noncollinear phase-matching SHG were confirmed. Relations that allow the calculation of the noncollinear phase-matching angle for any case of SHG are established. As an example, the noncolinear phase-matched SHG pattern on a screen is calculated numerically in the case of SHG of 1064 nm from a Nd:YAG laser under the phase-matched condition for two organic nonlinear crystals: 1-(2-thienyl)-3-(4-methyphenyl) propene-1 (TC-28), which is biaxial, and (2-furyl) methacrylic anhydride (FMA), which is uniaxial. Experimental results compared quite favorably with the theoretical analysis. Noncolinear phase matching may be of great practical interest in optical multiwave-mixing processes, such as optical parametric oscillation and optical parametric amplification. This technique also can be used for the measurement of crystal optical constants.
引用
收藏
页码:5301 / 5311
页数:11
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