Optimization of diffraction efficiency and gain for two-wave mixing in cubic (111)-cut photorefractive piezocrystals

被引:0
|
作者
Shepelevich, V.V. [1 ]
Nichiporko, S.F. [1 ]
Zagorskiy, A.E. [1 ]
Egorov, N.N. [1 ]
Hu, Yi [2 ]
Ringhofer, K.H. [2 ]
Shamonina, E. [2 ]
Gayvoronsky, V.Ya. [3 ]
机构
[1] Laboratory of Coherent Optics and Holography, Mozyr State Pedagogical Institute, 247760 Mozyr, Belarus
[2] Dept. of Physics, University, D-49069 Osnabrück, Germany
[3] Institute of Physics, National Academy of Sciences of Ukraine, Kiev, 252650 UA, Ukraine
关键词
Crystal orientation - Diffraction - Geometry - Light polarization - Piezoelectric materials;
D O I
10.1080/00150190211308
中图分类号
学科分类号
摘要
The dependence of the diffraction efficiency of holograms and the effective gain of the signal wave on the polarization and orientation angles is investigated for two-wave mixing in transmission geometry in cubic (111)-cut photorefractive piezocrystals (classes 23 and 3 m). It is shown theoretically and experimentally that in 2.1 mm thick BSO crystals (class 23) the piezoelectric effect leads to an increase of the diffraction efficiency by 70% and of the gain by 30% for certain values of the polarization and orientation angles. Without the piezoelectric effect the diffraction efficiency does not depend on polarization and orientation angles in both optically active (BSO) and optically inactive (GaAs) crystals, whereas the effective gain depends on polarization and orientation angles while its maximum value remains constant. It is found that for thickness of BSO crystal 8.2 mm the diffraction efficiency and the effective gain do not depend on polarization of reading light. For the first time the experimental dependence of maximum diffraction efficiency of hologram in (111)-cut BSO crystal on the orientation angle is found. The results of the experiment confirm correctness of chosen physical model of the diffraction. © 2002 Taylor & Francis.
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页码:641 / 669
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