Title :
Features of optical image jitter in a random medium with a finite outer scale
Author :
Bolbasova, L.A. ; Kovadlo, P.G. ; Lukin, V.P. ; Nosov, V.V. ; Torgaev, A.V.
Author_Institution :
V.E. Zuev Inst. of Atmos. Opt., Tomsk, Russia
Abstract :
Features of optical wave fluctuations while propagating through a randomly inhomogeneous turbulent medium with a finite outer scale are considered, including conditions when areas with dominating influence of one large scale coherent structure are observed in the atmosphere, for which the spectrum of atmospheric turbulence can differ significantly from the Kolmogorov model spectrum. Using an approximate model of the spectrum for coherent turbulence, described earlier in our works, the variance of jitter of an optical image is calculated (under the applicability condition for the smooth perturbation method). The comparison of these equations with known similar equations for Kolmogorov turbulence has shown that the variance of fluctuations is significantly weaker in coherent turbulence than in the Kolmogorov theory under similar conditions. This means that phase fluctuations of optical radiation decrease significantly in coherent turbulence. The importance of this conclusion is noted for interpretation of the results of optical sounding of atmospheric turbulence.
Keywords :
atmospheric light propagation; atmospheric turbulence; inhomogeneous media; jitter; optical images; random media; Kolmogorov model spectrum; Kolmogorov theory; Kolmogorov turbulence; approximate model; atmospheric turbulence; coherent structure; coherent turbulence; finite outer scale; optical image jitter; optical propagation; optical radiation; optical sounding; optical wave fluctuations; phase fluctuations; randomly inhomogeneous turbulent medium; smooth perturbation method; Atmospheric modeling; Fluctuations; Jitter; Mathematical model; Optical imaging; Telescopes;
Conference_Titel :
Advanced Optoelectronics and Lasers (CAOL), 2013 International Conference on
Conference_Location :
Sudak
Print_ISBN :
978-1-4799-0016-9
DOI :
10.1109/CAOL.2013.6657624