Acousto-Optical Laser Systems for the Formation of Television Images

Acousto-Optical Laser Systems for the Formation of Television Images

Gulyaev, Yu V.; Shatkin, O.V.; Kazaryan, M. A.; Mokrushnin, M.

Taylor & Francis Ltd

12/2021

274

Mole

Inglês

9781032235820

15 a 20 dias

510

Descrição não disponível.
Introduction

1.Methods of producing laser projection images

2.Acousto-optical devices for modulation and deflection of the laser light beam for information display systems

3. Theoretical consideration of the process of image formation in the acousto-optical system with the pulsed coherent light source

4. Development and experimental investigations of individual sections and elements of acousto-optical system for the formation of TV images

5. Experimental investigations of the acousto-optical system or displaying and recording information with a copper vapour laser

Conclusion

Appendix 1. Parameters of some crystals used in acousto-optical devices

Appendix 2. Expressions for the time-average light intensity in the fifth and fourth order of interaction

Appendix 3. Design of the copper vapour laser (laser generator) developed for the display of information of a large screen

Appendix 4. An oscillator-amplifier copper vapour laser system for illumination of architectural structures and formation of vector-graphic images

References

Index
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Acousto Optical Modulator;Copper Vapour Laser;full-color pulsed solid-state lasers;AOD;copper vapor lasers;Acousto Optical Interaction;acousto-optical systems;Tv Image;acousto-optic control device;Piezoelectric Transducer;optical processing;Diffraction Efficiency;real-time imaging;TeO2 Crystal;Elastic Wave;Diffraction Order;Acousto Optical Devices;RDS;AOC;Mirror Drum;Gas Discharge Tube;Lithium Niobate Crystal;Mirror M1;Lithium Niobate;Electromechanical Coupling Coefficient;Laser Radiation;Slow Shear Wave;L1 L2 L3;Television System;Visible Wavelength Range;Diffracted Field