In this work, the plasma formed under the influence of Nd: YAG laser radiation with a wavelength of 1064 nm and a pulse duration of 10 ns on the indium surface at normal atmospheric pressure was studied using a spectroscopic method. The main optical properties of the laser plasma formed on the indium surface were determined by the electron density using the Stark expansion method and the electron temperature using the Boltzmann distribution graph method."Science and innovation" international scientific journal. ISSN: 2181-333
Optical emission spectra of the plasma generated by a 532 nm Nd:YAG laser irradiation onto a standar...
Abstract A spectroscopic study on laser-produced tin plasma utilizing the optical emission spectrosc...
A pulsed Nd:Yag laser, at intensities of the order of 1010 W/cm2, is employed to irradiate differen...
In the present research work we present the optical emission studies of the Indium (In) – Tin (Sn) p...
We report experimental research of the laser-produced indium plasma in hydrogen, argon and residual ...
International audienceWe have performed spectroscopic analysis of the plasma generated by Nd:YAG (la...
This paper describes results of spectroscopic investigation of laser-produced tungsten plasma. The l...
AbstractA fundamental to understanding physical processes in laser plasma is to study plasma density...
We present time resolved spectroscopic measurements of 1064 nm laser produced plasma in air at press...
In this work we have realized plasma diagnosis produced by Laser (LPP), by means of emission spectro...
LIBS plasma produced by a 1064 nm Q-switched Nd:YAG laser in an atmospheric pressure was studied for...
In this paper, line profile analysis of several Cr transitions was carried out for characterization ...
Stark widths of 34 spectral lines of Pb I have been measured in a Laser-Induced-Plasma (LIP). The op...
To develop a more efficient plasma light source, molecules are considered as the prime source of rad...
International audienceWe report on accurate analysis of indium-zinc oxide thin films via laser-induc...
Optical emission spectra of the plasma generated by a 532 nm Nd:YAG laser irradiation onto a standar...
Abstract A spectroscopic study on laser-produced tin plasma utilizing the optical emission spectrosc...
A pulsed Nd:Yag laser, at intensities of the order of 1010 W/cm2, is employed to irradiate differen...
In the present research work we present the optical emission studies of the Indium (In) – Tin (Sn) p...
We report experimental research of the laser-produced indium plasma in hydrogen, argon and residual ...
International audienceWe have performed spectroscopic analysis of the plasma generated by Nd:YAG (la...
This paper describes results of spectroscopic investigation of laser-produced tungsten plasma. The l...
AbstractA fundamental to understanding physical processes in laser plasma is to study plasma density...
We present time resolved spectroscopic measurements of 1064 nm laser produced plasma in air at press...
In this work we have realized plasma diagnosis produced by Laser (LPP), by means of emission spectro...
LIBS plasma produced by a 1064 nm Q-switched Nd:YAG laser in an atmospheric pressure was studied for...
In this paper, line profile analysis of several Cr transitions was carried out for characterization ...
Stark widths of 34 spectral lines of Pb I have been measured in a Laser-Induced-Plasma (LIP). The op...
To develop a more efficient plasma light source, molecules are considered as the prime source of rad...
International audienceWe report on accurate analysis of indium-zinc oxide thin films via laser-induc...
Optical emission spectra of the plasma generated by a 532 nm Nd:YAG laser irradiation onto a standar...
Abstract A spectroscopic study on laser-produced tin plasma utilizing the optical emission spectrosc...
A pulsed Nd:Yag laser, at intensities of the order of 1010 W/cm2, is employed to irradiate differen...