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Tunable two-dimensional hexagonal phase array in domain-engineered Z-cut lithium niobate crystal

Academic Article
Publication Date:
2006
abstract:
An optical phase array with tunable phase step is demonstrated. The phase array consists of a twodimensional hexagonal lattice of inverted ferroelectric domains fabricated on a Z-cut lithium niobate substrate. The electro-optically tunable phase step is obtained by the application of an external electric field along the z axis of the crystal via transparent electrodes. Theoretical analysis and experimental results are presented, showing that a tunable and flexible adaptive optical illuminator device can be realized by combining the electro-optic tunability with the Talbot effect. Generation of a multiplicity of light patterns is shown.
Iris type:
01.01 Articolo in rivista
Keywords:
OPTOELECTRONICA; MODULATORE; NIOBATO DI LITIO; PHASE ARRAY; LASER
List of contributors:
Gioffre', MARIANO ANTONIO; DE NICOLA, Sergio; Iodice, Mario; Ferraro, Pietro; Coppola, Giuseppe; DE NATALE, Paolo
Authors of the University:
COPPOLA GIUSEPPE
DE NATALE PAOLO
FERRARO PIETRO
GIOFFRE' MARIANO ANTONIO
IODICE MARIO
Handle:
https://iris.cnr.it/handle/20.500.14243/151903
Published in:
OPTICS LETTERS
Journal
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