DocumentCode :
2287904
Title :
Continuous beam shaping with optical phased arrays using diffractive optics optimization
Author :
Enguehard, S. ; Hatfield, B.
Author_Institution :
Appl. Math. Phys. Res. Inc., Lexington, MA, USA
Volume :
3
fYear :
2002
fDate :
2002
Abstract :
Optical phased arrays (OPAs) are equivalent to kinoform diffractive optical elements or holograms imparting a phase profile on a laser beam. Unlike static diffractive elements, OPAs are active, dynamical, and rewritable. These dynamical components can be used for beam propagation control if provided with control solutions. The goal of the control solutions is identical to the optimization of diffractive optical element design. We have developed a diffractive optics design optimization algorithm based on propagation reciprocity symmetry. The algorithm is completely wave-optics based and can be equally applied to the Fraunhofer and Fresnel diffraction regimes. The framework for the optimization is constrained Lagrangian dynamics and does not involve any stochastic integration. This makes it ideal for application to real-time OPA beam control. We have implemented the optimization algorithm in a PC-based design tool for fan-out gratings, radial phase elements, 2D holograms, and refractive correctors. We present many examples of optimized designs for these elements, and show how this design technology can be transitioned to applications that include fiber mode coupling and optical correlators. Innovative physical realizations of these dynamic optical elements can be achieved using spatial light modulators based on liquid crystals or MEMS.
Keywords :
CAD; Fraunhofer diffraction; Fresnel diffraction; diffraction gratings; diffractive optical elements; holographic optical elements; micro-optics; optical arrays; optical correlation; optical design techniques; optical fibre couplers; optimisation; spatial light modulators; 2D holograms; Fraunhofer diffraction; Fresnel diffraction; MEMS-based SLM; OPA; PC-based design tool; active dynamical rewritable diffractive elements; beam propagation control; constrained Lagrangian dynamics optimization framework; continuous beam shaping; diffractive optics design optimization algorithm; diffractive optics optimization; fan-out gratings; fiber mode coupling; holograms; kinoform diffractive optical elements; laser beam phase profile; liquid crystal-based SLM; optical correlators; optical phased arrays; optimization algorithm; propagation reciprocity symmetry; radial phase elements; real-time OPA beam control; refractive correctors; spatial light modulators; static diffractive elements; stochastic integration; wave-optics based algorithm; Design optimization; Laser beams; Optical arrays; Optical beams; Optical design; Optical diffraction; Optical modulation; Optical propagation; Optical refraction; Phased arrays;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Aerospace Conference Proceedings, 2002. IEEE
Print_ISBN :
0-7803-7231-X
Type :
conf
DOI :
10.1109/AERO.2002.1035277
Filename :
1035277
Link To Document :
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