2002
DOI: 10.1080/00150190211441
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Optimization of Diffraction Efficiency and Gain for Two-Wave Mixing in Cubic (111)-Cut Photorefractive Piezocrystals

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Cited by 10 publications
(3 citation statements)
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“…The influence of the piezoelectric effect and photoelasticity on the properties of transmission holograms in cubic photorefractive crystals of (111)-cut was studied theoretically and experimentally for the first time by Shepelevich et al [114]. This research area was then further developed [115][116][117][118][119]. The results of these studies can be summarized as follows:…”
Section: Role Of the Piezoelectric Effect In The Formation And Readinmentioning
confidence: 98%
“…The influence of the piezoelectric effect and photoelasticity on the properties of transmission holograms in cubic photorefractive crystals of (111)-cut was studied theoretically and experimentally for the first time by Shepelevich et al [114]. This research area was then further developed [115][116][117][118][119]. The results of these studies can be summarized as follows:…”
Section: Role Of the Piezoelectric Effect In The Formation And Readinmentioning
confidence: 98%
“…Такая оптимизация мо-жет быть выполнена путем выбора значений азиму-та линейной поляризации считывающего голограмму пучка, при которых для фиксированных углов про-странственной ориентации кристалла, называемых ни-же ориентационными углами, достигаются максималь-ные значения дифракционной эффективности голограмм. Эти значения азимута линейной поляризации можно определить на основании аналитического решения си-стемы дифференциальных уравнений связанных волн, которое для случая чисто фазовых голограмм в кри-сталле BSO получено и экспериментально подтвержде-но для срезов (110) и (111), например, в [6] и [7] соответственно.…”
Section: (поступило в редакцию 29 июня 2016)unclassified
“…The piezoelectric effects in sillenites have attracted considerable attention (see, e.g., [29][30][31][32]). One way in which piezoelectric properties of the crystal manifest themselves is the change in the refractive index of the crystal through a chain of interactions: the space-charge field gives rise to strain via the piezoelectric effect, and the strain causes a variation in the refractive index via the photoelastic effect.…”
Section: Optical Properties and Photoactive Centersmentioning
confidence: 99%