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Orthogonal vectorial two-wave mixing in optically active photorefractive crystal
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Paper Abstract

In this paper, we propose a theoretical model of vectorial two-wave mixing in optically active photorefractive cubic crystals of the point group 23 and 43m in orthogonal geometry. Proposed model takes into account polarization states of coupling waves, their dependence on the location in the crystal, orientation of wave vectors relative to the main crystallographic axes and optical activity of a crystal. Sets of the wave parameters which provide either a maximum efficiency of wave coupling or wave coupling efficiency insensitive to polarization state of signal wave are found with use of proposed model.

Paper Details

Date Published: 4 January 2019
PDF: 6 pages
Proc. SPIE 11024, Asia-Pacific Conference on Fundamental Problems of Opto- and Microelectronics 2017, 110240W (4 January 2019); doi: 10.1117/12.2519689
Show Author Affiliations
Michael N. Bezruk, Institute for Automation and Control Processes (Russian Federation)
Yury N. Kulchin, Institute for Automation and Control Processes (Russian Federation)
Far Eastern State Federal Univ. (Russian Federation)
Roman V. Romashko, Institute for Automation and Control Processes (Russian Federation)
Far Eastern State Federal Univ. (Russian Federation)


Published in SPIE Proceedings Vol. 11024:
Asia-Pacific Conference on Fundamental Problems of Opto- and Microelectronics 2017
Yuri N. Kulchin; Roman V. Romashko; Jyh-Chiang Jiang, Editor(s)

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