Atmospheric Turbulence with Kolmogorov Spectra: Software Simulation, Real-Time Reconstruction and Compensation by Means of Adaptive Optical System with Bimorph and Stacked-Actuator Deformable Mirrors

Author:

Galaktionov Ilya1ORCID,Sheldakova Julia1ORCID,Samarkin Vadim1,Toporovsky Vladimir1ORCID,Kudryashov Alexis1

Affiliation:

1. Sadovsky Institute of Geosphere Dynamics, Russian Academy of Sciences, Leninskiy Pr. 38/1, 119334 Moscow, Russia

Abstract

Atmospheric turbulence causes refractive index fluctuations, which in turn introduce extra distortions to the wavefront of the propagated radiation. It ultimately degrades telescope resolution (in imaging applications) and reduces radiation power density (in focusing applications). One of the possible ways of researching the impact of turbulence is to numerically simulate the spectrum of refractive index fluctuations, to reproduce it using a wavefront corrector and to measure the resultant wavefront using, for example, a Shack–Hartmann sensor. In this paper, we developed turbulence simulator software that generates phase screens with Kolmogorov spectra. We reconstructed the generated set of phase screens using a stacked-actuator deformable mirror and then compensated for the introduced wavefront distortions using a bimorph deformable mirror. The residual amplitude of the wavefront reconstructed by the 19-channel stacked-actuator mirror was 0.26 λ, while the residual amplitude of the wavefront compensated for by the 32-channel bimorph mirror was 0.08 λ.

Funder

state assignment of Ministry of Science

Publisher

MDPI AG

Subject

Radiology, Nuclear Medicine and imaging,Instrumentation,Atomic and Molecular Physics, and Optics

Reference79 articles.

1. Tatarsky, V.I. (1967). Waves Propagation in Turbulent Atmosphere, Nauka.

2. Andrews, L.C., and Phillips, R.L. (2005). Laser Beam Propagation Through Random Media, SPIE Press. [2nd ed.].

3. Secure free-space optical communication system based on data fragmentation multipath transmission technology;Huang;Opt. Express,2018

4. Nafria, V., Han, X., and Djordjevic, I. (September, January 24). Improving free-space optical communication with adaptive optics for higher order modulation. Proceedings of the Optics and Photonics for Information Processing XIV, Online, CA, USA.

5. Vorontsov, M., Weyrauch, T., Carhart, G., and Beresnev, L. (2010). Lasers, Sources and Related Photonic Devices, OSA Technical Digest Series (CD), Optica Publishing Group.

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