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ISSN: 1023-5086

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ISSN: 1023-5086

Scientific and technical

Opticheskii Zhurnal

A full-text English translation of the journal is published by Optica Publishing Group under the title “Journal of Optical Technology”

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УДК: 535.212, 621.373.826

The acceleration of macroparticles by a picosecond laser pulse

For Russian citation (Opticheskii Zhurnal):

Бородин В.Г., Комаров В.М., Малинов В.А., Мигель В.М., Оспенникова С.Н., Потапов С.Л., Чарухчев А.В., Андреев А.А., Платонов К.Ю. Ускорение макрочастиц пикосекундным лазерным импульсом // Оптический журнал. 2009. Т. 76. № 9. С. 32–37.

 

Borodin V.G., Komarov V.M., Malinov V.A., Migel V.M., Ospennikova S.N., Potapov S.L., Charukhchev A.V., Andreev A.A., Platonov K.Yu. The acceleration of macroparticles by a picosecond laser pulse [in Russian] // Opticheskii Zhurnal. 2009. V. 76. № 9. P. 32–37.

For citation (Journal of Optical Technology):

V.G. Borodin, V.M. Komarov, V.A. Malinov, V.M. Migel, S.N. Ospennikova, S.L. Potapov, A.V. Charukhchev, A.A. Andreev, and K.Yu. Platonov, "The acceleration of macroparticles by a picosecond laser pulse," Journal of Optical Technology. 76 (9), 550-554 (2009). https://doi.org/10.1364/JOT.76.000550

Abstract:

This paper presents the results of studies of the acceleration of macroparticles consisting of fragments of matter from the back side of a solid target when its front surface is irradiated with a picosecond laser pulse with intensity 1013-1015 W/cm2. It is experimentally shown that there are optimal conditions for maximizing the spalling momentum of the target fragments, depending on its thickness and the intensity of the laser pulse on the front surface. The focusing of melted fragments of the substance, split off from the back surface of a target made in the form of a hemisphere, is experimentally demonstrated. The spalling momentum from such a target is greater than the momentum from a flat target of the same thickness by a factor of 6 -7.

Keywords:

ultrashort laser pulse, solid target, acceleration of macroparticles' flow, mechanical spalling momentum

Acknowledgements:

The research was partially supported by RFBR (grant No. 07-02-00705).

OCIS codes: 320.7130

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