Paper
4 January 2008 The dynamic of self-pumped phase conjugate flat-concave loop mirrors in the photorefractive nonlinearity
Mehran Vahdani Moghaddam, Zeynab Chenari, Hamid Latifi D.D.S., Vladimir Vladimirovich Shuvalov, Konestantin Valentinovich Rudenko
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Abstract
The numerical simulations of self-organization have been considered in the self-pumped phase conjugate compact loop mirrors based on a photorefractive crystal PRC BaTiO3 . We show that under optimal condition the nonlinear reflection coefficient of such mirror achieves the maximum value 0.80 - 0.90 at the maximum conjugate fidelity equal to 0.95 - 0.98. In this geometry the conjugate wave-front is generated due to scattering from a dynamic hologram produced in the self-intersection region of the forward and backward beams. As a result, the scenario of passing to unstable generation regimes in this case is the same as self-pumped loop phase-conjugate-mirror (PCM) but substantially differs from a single-crystal double PCM.
© (2008) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Mehran Vahdani Moghaddam, Zeynab Chenari, Hamid Latifi D.D.S., Vladimir Vladimirovich Shuvalov, and Konestantin Valentinovich Rudenko "The dynamic of self-pumped phase conjugate flat-concave loop mirrors in the photorefractive nonlinearity", Proc. SPIE 6839, Nonlinear Optics: Technologies and Applications, 683909 (4 January 2008); https://doi.org/10.1117/12.755955
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KEYWORDS
Mirrors

Atrial fibrillation

Holograms

Phase conjugation

Crystals

Nonlinear crystals

Numerical simulations

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