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JOURNALS // Kvantovaya Elektronika // Archive

Kvantovaya Elektronika, 2020 Volume 50, Number 7, Pages 694–699 (Mi qe17276)

This article is cited in 2 papers

Control of laser radiation parameters

Phasing of seven-channel fibre laser radiation with dynamic turbulent phase distortions using a stochastic parallel gradient algorithm at a bandwidth of 450 kHz

M. V. Volkov, S. G. Garanin, T. I. Kozlova, M. I. Konoval'tsov, A. V. Kopalkin, R. S. Lebedev, F. A. Starikov, O. L. Techko, S. V. Tyutin, S. V. Khokhlov, V. S. Tsykin

Federal State Unitary Enterprise "Russian Federal Nuclear Center — All-Russian Research Institute of Experimental Physics",Institute of Laser Physical Research, Sarov, Nizhny Novgorod region

Abstract: We have demonstrated an experimental setup for the coherent phasing of a seven-channel fibre laser system (λ = 1064 nm) in a scheme comprising a master oscillator and a set of parallel amplifiers with lithium niobate-based fibre-optic phase modulators. Using a stochastic parallel gradient algorithm, an instrumental phase modulator control unit ensures a bandwidth of the system up to 450 kHz. The effectiveness of phasing of light transmitted through a turbulent medium with a characteristic time scale τturb has been studied experimentally as a function of phasing time τph. The results demonstrate that the average Strehl ratio begins to rise at τturbph ≥ 2 and that the effectiveness of compensation for dynamic phase distortions in the beam propagation path rises sharply at τturbph ≈ 20. For τturbph ≥ 30 – 40, the average Strehl ratio remains constant at the level reached.

Keywords: phasing of laser radiation, fibre laser, stochastic parallel gradient algorithm, atmospheric turbulence.

Received: 19.11.2019
Revised: 15.01.2020


 English version:
Quantum Electronics, 2020, 50:7, 694–699

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© Steklov Math. Inst. of RAS, 2024