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JOURNALS // Computer Optics // Archive

Computer Optics, 2020 Volume 44, Issue 4, Pages 519–532 (Mi co816)

This article is cited in 5 papers

OPTO-IT

The combined use of adaptive optics and nonlinear optical wavefront reversal techniques to compensate for turbulent distortions when focusing laser radiation on distant objects

V. P. Lukina, N. N. Botygina (Savina)a, P. A. Konyaeva, O. V. Kulaginb, I. A. Gorbunovb

a V.E. Zuev Institute of Atmospheric Optics SB RAS, Tomsk
b Institute of Applied Physics RAS, Niznii Novgorod

Abstract: Approaches to constructing a mock-up of a system for focusing laser radiation on distant objects using both adaptive optics elements and nonlinear-optical wavefront reversal methods providing compensation for turbulent distortions are considered. Numerical calculations were preliminarily performed, in which the split-step method was used as a numerical method for solving a second-order partial differential wave equation for the complex amplitude of the wave field of a laser beam. This method, combined with methods of spectral-phase Fourier transforms and statistical tests, is the most effective way to obtain reliable quantitative results for solving engineering problems of atmospheric wave optics. Quantitative data are obtained on the effect of turbulent atmospheric distortions along propagation paths on the main parameters of coherent laser beams – focusing, effective average radius, and the proportion of the beam energy in its diffraction spot. The preliminary results obtained of the system mock-up performance confirm the conclusions of the theory.

Keywords: adaptive optics, phase conjugation, wavefront reversal, wavefront sensor.

Received: 24.03.2020
Accepted: 22.05.2020

DOI: 10.18287/2412-6179-CO-725



© Steklov Math. Inst. of RAS, 2024