Title :
Optical multifrequency complex holograms
Author :
Titar, V.P. ; Bogdanova, T.V.
Author_Institution :
Karazin Krarkov Nat. Univ., Kharkov, Ukraine
Abstract :
A two-channel system for synthesizing two-dimensional optical multifrequency complex holograms of rotating objects was developed. In the object irradiation (longitudinal) direction, a hologram is synthesized due to multifrequency laser radiation, and in the transverse direction, the synthesis is provided by object rotation. The resolution of the synthesized hologram in the longitudinal direction is determined by the frequency bandwidth of the laser radiation, and in transverse direction, the resolution is determined by the initial laser-radiation frequency and the angle of object rotation during the time of hologram synthesis. Using a digital simulation, the degree of isoplanarity of the multifrequency system for synthesizing holograms of rotating objects and its noise immunity under conditions of phase noises were analyzed.
Keywords :
holography; optical noise; phase noise; rotation; frequency bandwidth; isoplanarity; multifrequency laser radiation; object rotation; optical multifrequency complex holograms; phase noises; Apertures; Bandwidth; Digital simulation; Frequency synthesizers; Holographic optical components; Holography; Laser noise; Lenses; Optical filters; Signal synthesis;
Conference_Titel :
Advanced Optoelectronics and Lasers, 2005. Proceedings of CAOL 2005. Second International Conference on
Print_ISBN :
0-7803-9130-6
DOI :
10.1109/CAOL.2005.1553961