Filamentation of collimated Ti:sapphire-laser pulses in the glass /D. V. Apeksimov, O. A. Bukin, S. S. Golik [et.al.]

Электронный ресурс
Другой Автор
Apeksimov, Dmitrij V.
Golik, Sergej S.
Zemlyanov, Alexander A.
Iglakova, Anastasiya N.
Kabanov, Andrej M.
Kuchinskaya, Olesya I.
Matvienko, Gennadij G.
Oshlakov, Viktor K.
Petrov, Aleksej V.
Bukin, Oleg A.
Sokolova, Ekaterina B.
Источник
Proceedings of SPIE 2015 Vol. 9810 : XII International Conference on Atomic and Molecular Pulsed Lasers. P. 98100H-1-98100H-4
Аннотация
The results of experiments to study the spatial characteristics of multiple filamentation gigawatt laser pulses in the glass are presented. It is shown that with increasing pulse power multiple filamentation region increases in length and diameter, the distribution of filaments within the region has a maximum value when the power > 105 Pcr area filamentation takes the form of a hollow cone, the apex directed to the source of the laser radiation.
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$a The results of experiments to study the spatial characteristics of multiple filamentation gigawatt laser pulses in the glass are presented. It is shown that with increasing pulse power multiple filamentation region increases in length and diameter, the distribution of filaments within the region has a maximum value when the power > 105 Pcr area filamentation takes the form of a hollow cone, the apex directed to the source of the laser radiation.
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$a Golik, Sergej S.
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$a Zemlyanov, Alexander A.
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$a Томский государственный университет $b Радиофизический факультет $b Кафедра оптико-электронных систем и дистанционного зондирования
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Резюме
The results of experiments to study the spatial characteristics of multiple filamentation gigawatt laser pulses in the glass are presented. It is shown that with increasing pulse power multiple filamentation region increases in length and diameter, the distribution of filaments within the region has a maximum value when the power > 105 Pcr area filamentation takes the form of a hollow cone, the apex directed to the source of the laser radiation.