Title :
Adaptive Array of Phase-Locked Fiber Collimators: Analysis and Experimental Demonstration
Author :
Vorontsov, Mikhail A. ; Weyrauch, Thomas ; Beresnev, Leonid A. ; Carhart, Gary W. ; Liu, Ling ; Aschenbach, Konley
Author_Institution :
Comput. & Inf. Sci. Directorate, U.S. Army Res. Lab., Adelphi, MD
Abstract :
We discuss development and integration of a coherent fiber array system composed of densely packed fiber collimators with built-in capabilities for adaptive wavefront phase piston and tilt control at each fiber collimator. In this system, multi-channel fiber-integrated phase shifters are used for phase locking of seven fiber collimators and the precompensation of laboratory-generated turbulence-induced phase aberrations. Controllable x and y displacements of the fiber tips in the fiber collimator array provide additional adaptive compensation of the tip and tilt phase aberration components. An additional control system is utilized for equalization of the intensity of each of the fiber collimator beams. All three control systems are based on the stochastic parallel gradient descent optimization technique. The paper presents the first experimental results of adaptive dynamic phase distortion compensation with an adaptive phase-locked fiber collimator array system.
Keywords :
adaptive optics; laser beams; optical collimators; optical fibre amplifiers; optical phase locked loops; adaptive array; adaptive compensation; adaptive wavefront phase piston; coherent fiber array system; densely packed fiber collimators; equalization; fiber collimator array; fiber collimator beams; multi channel fiber integrated phase shifters; phase aberration components; phase locked fiber collimators; three control systems; tilt control; turbulence induced phase aberrations; Adaptive optics (AO); optical arrays; optical beams; phased arrays;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2008.2010875