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This article is cited in 2 scientific papers (total in 2 papers)
Optics, Quantum Electronics
Diffraction of pulsed laser radiation from an acoustic wave with frequency- and phase-shift keying
S. N. Antonova, A. V. Vainera, V. V. Proklova, Yu. G. Rezvovb a Kotelnikov Institute of Radioengineering and Electronics, Fryazino Branch, Russian Academy of Sciences
b Novomoskovsk's Institute (subdivision) of the Mendeleyev Russian Chemical-Technological University
Abstract:
Bragg acoustooptic diffraction of nanosecond pulsed laser radiation from a frequency- and/or phase-keyed acoustic wave is studied experimentally and theoretically for exact synchronization of laser pulses and signal keying. It is shown that the diffraction field for short pulses is practically stationary and is determined by the positions of acoustic signal keying over signal aperture. The application of this type of signals for the formation of a multibeam diffraction pulsed radiation field is considered. A method is proposed for transforming the angular spectrum of laser radiation intensity from the initial Gaussian to a nearly rectangular spectrum. This may considerably increase the efficiency of high-power technological lasers used in material processing (laser cutting, welding, engraving, etc.), in which the action of radiation is of the thresh-old type in light intensity. The possibility of correcting the angular intensity distribution for a pulsed fiber laser, which increases the thermal efficiency of radiation from such a laser, is established experimentally.
Received: 24.09.2008 Accepted: 12.02.2009
Citation:
S. N. Antonov, A. V. Vainer, V. V. Proklov, Yu. G. Rezvov, “Diffraction of pulsed laser radiation from an acoustic wave with frequency- and phase-shift keying”, Zhurnal Tekhnicheskoi Fiziki, 79:11 (2009), 65–71; Tech. Phys., 54:11 (2009), 1626–1632
Linking options:
https://www.mathnet.ru/eng/jtf9980 https://www.mathnet.ru/eng/jtf/v79/i11/p65
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