Microcrystal ordering and second-order optical susceptibilities of zinc oxide films

Second harmonic generation in zinc oxide films deposited by the hydrothermal method was investigated. A correlation between second-order optical susceptibility tensor components d311 and d333 was studied by using the model of noninteracting microcrystals, and the origin of different contributions to the film nonlinearities was discussed. The change of stacking sequences and the inhomogeneity in the distribution of the nonlinearities over the film thickness are the most probable effects hindering the investigations of the thickness dependence of ZnO film nonlinearities. A model of the inhomogeneous distribution of the nonlinearities over the film thickness was used for doing an analysis of the experimental data features, which were accounted for by a sublayer, adjacent to the seed layer, and possess high optical nonlinearity, d333 = -72.6 pm/V. © 2022 Author(s).

Авторы
Maslyanitsyn I.1 , Hayrullina I. 2 , Shigorin V.1 , Voronov V.1 , Nagovitsyn I.1, 3 , Savranskii V.1 , Novikov N.1 , Lobanov A.3 , Chudinova G.1, 4
Номер выпуска
5
Язык
Английский
Статус
Опубликовано
Номер
053105
Том
131
Год
2022
Организации
  • 1 Prokhorov General Physics Institute, The Russian Academy of Sciences, 38 Vavilova Str., Moscow, 119991, Russian Federation
  • 2 Peoples Friendship University of Russia, RUDN University, 6 Miklukho-Maklaya str., Moscow, 117198, Russian Federation
  • 3 N.N. Semenov Federal Research Center for Chemical Physics, The Russian Academy of Sciences, 4 Kosygina str., Moscow, 119991, Russian Federation
  • 4 National Research Nuclear University MEPhI, 31 Kashirskoye shosse, Moscow, 115403, Russian Federation
Ключевые слова
Film thickness; Microcrystals; Nonlinear optics; Optical correlation; Oxide films; Zinc oxide; Film nonlinearity; Film-thickness; Hydrothermal methods; Noninteracting; Optical susceptibility; Second orders; Stacking sequence; Susceptibility tensors; Tensor components; Zinc oxide film; II-VI semiconductors
Дата создания
06.07.2022
Дата изменения
06.07.2022
Постоянная ссылка
https://repository.rudn.ru/ru/records/article/record/83850/
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