DocumentCode :
3444201
Title :
High-speed spectrally-resolved imaging of the laser ablation plasma
Author :
Popov, Sergey A. ; Batrakov, Alexander V. ; Mataibaev, Vyacheslav V.
Author_Institution :
Inst. of High-Current Electron., Tomsk, Russia
fYear :
2015
fDate :
24-28 May 2015
Firstpage :
1
Lastpage :
1
Abstract :
Summary form only given. The paper is devoted to the experimental investigation of the laser ablation. Free surface of the liquid phase gallium-indium alloy in vacuum was served as the ablation target. For the ablation, compact Nd-YAG laser pumped by LED was used, generating the irradiation pulse with energy content of 0.28 mJ/pulse at the FWHM duration of 2.7 ns. Method of spectrally-resolved frame imaging was realized for the visualization the luminescence of different plasma species. 4-channel intensified frame camera HSFC-Pro with the minimum exposure time of 3 ns was used. Three channels of the camera were equipped with the narrow-band interference optical filters for the registration the line radiation originated from different gallium components: neutral atoms, single- and double-charged ions. Spectral-spatial structure of plasma glowing was analyzed as well as the dynamics of expansion of plasma including the expansion of differently-charged components. It was demonstrated that the expansion velocity of heavy plasma components increases with the charge state of particles. Quantitatively, the results are in a good agreement with the data of mass-energy analysis performed earlier.
Keywords :
gallium alloys; glow discharges; indium alloys; laser ablation; light emitting diodes; luminescence; neodymium; optical filters; optical pulse generation; optical pumping; plasma diagnostics; plasma production by laser; solid lasers; 4-channel intensified frame camera HSFC-Pro; FWHM duration; GdIn; LED pumped Nd:YAG laser; YAG:Nd; double-charged ions; expansion velocity; heavy plasma components; high-speed spectrally-resolved imaging; irradiation pulse generation; laser ablation plasma; liquid phase gallium-indium alloy; luminescence; mass-energy analysis; narrow-band interference optical filters; neutral atoms; particle charge state; plasma expansion; plasma glow; single-charged ions; time 3 ns; vacuum; Cameras; Indium; Laser excitation; Liquids; Plasmas;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Plasma Sciences (ICOPS), 2015 IEEE International Conference on
Conference_Location :
Antalya
Type :
conf
DOI :
10.1109/PLASMA.2015.7179684
Filename :
7179684
Link To Document :
بازگشت