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Detection of Laser-Produced Tin Plasma Emission Lines in Atmospheric Environment by Optical Emission Spectroscopy Technique

Detection of Laser-Produced Tin Plasma Emission Lines in Atmospheric Environment by Optical Emission Spectroscopy Technique
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摘要 A spectroscopic study on laser-produced tin plasma utilizing the optical emission spectroscopy (OES) technique is presented. Plasma is produced from a solid tin target irradiated with pulsed laser in room environment. Electron temperature is determined at different laser peak powers from the ratio of line intensities, while electron density is deduced from Saha-Boltzmann equation. A limited number of suitable tin lines are detected, and the effect of the laser peak power on the intensity of emission lines is discussed. Electron temperatures are measured in the range of 0.36eV-0.44eV with electron densities of the order 1017cm-3 as the laser peak power is varied from 11 MW to 22 MW. A spectroscopic study on laser-produced tin plasma utilizing the optical emission spectroscopy (OES) technique is presented. Plasma is produced from a solid tin target irradiated with pulsed laser in room environment. Electron temperature is determined at different laser peak powers from the ratio of line intensities, while electron density is deduced from Saha-Boltzmann equation. A limited number of suitable tin lines are detected, and the effect of the laser peak power on the intensity of emission lines is discussed. Electron temperatures are measured in the range of 0.36eV-0.44eV with electron densities of the order 1017cm-3 as the laser peak power is varied from 11 MW to 22 MW.
机构地区 Department of Physics
出处 《Photonic Sensors》 SCIE EI CAS CSCD 2017年第4期289-293,共5页 光子传感器(英文版)
关键词 Tin plasma laser-produced plasma electron density electron temperature Tin plasma laser-produced plasma electron density electron temperature
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