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JOURNALS // Kvantovaya Elektronika // Archive

Kvantovaya Elektronika, 1998 Volume 25, Number 1, Pages 36–40 (Mi qe1132)

This article is cited in 4 papers

Interaction of laser radiation with matter. Laser plasma

Emission spectroscopy of a carbon plasma formed by laser ablation of graphite. II. Ablation by a CO2 laser and also simultaneously by XeCl and CO2 lasers

A. V. Dem'yanenko, V. S. Letokhov, A. A. Puretskii, E. A. Ryabov

Institute of Spectroscopy, Russian Academy of Sciences, Troitsk, Moscow

Abstract: The method of time-resolved emission spectroscopy was used to investigate the radiation emitted by a carbon plasma plume formed as a result of vacuum ablation of graphite by pulsed CO2 laser radiation. The spectrum of the radiation changed drastically in the course of emission from the plasma. The spectrum revealed successive appearance of various luminescence components contributed by C+ ions, C2 radicals, and microparticles. This spectrum differed considerably from that observed for a plasma formed by ablation with an XeCl laser, mainly because of the difference between the laser radiation wavelengths. Under certain conditions it was found that additional heating with CO2 laser radiation of a plasma formed by ablation of graphite with XeCl laser radiation altered greatly the emission spectrum. The changes indicated a higher degree of particle atomisation and a higher proportion of ions in such a plasma, compared with the plasma produced by one laser.

PACS: 52.70.Kz, 52.50.Jm, 52.25.Kn

Received: 22.07.1997


 English version:
Quantum Electronics, 1998, 28:1, 33–37

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