Spectroscopic Studies of Indium Plasma Produced by Fundamental (1,064 nm) and Second (532 nm) Harmonics of an Nd:YAG Laser
- Authors: Hanif M.1, Salik M.2, Baig M.A.3
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Affiliations:
- NUST College of E&ME (National University of Sciences & Technology)
- Institute of Optoelectronics, Beijing Jiaotong University
- National Center for Physics (NCP), Quaid-E-Azam University Campus
- Issue: Vol 39, No 1 (2018)
- Pages: 37-45
- Section: Article
- URL: https://journals.rcsi.science/1071-2836/article/view/248314
- DOI: https://doi.org/10.1007/s10946-018-9687-3
- ID: 248314
Cite item
Abstract
In this paper, we present spectroscopic studies of a laser-induced indium (In) plasma produced by fundamental (1,064 nm) and second (532 nm) harmonics of an Nd:YAG laser along with the characteristics determined by plasma parameters. The electron temperature is determined using four lines of neutral indium at 260.17, 271.02, 275.38, and 325.85 nm, in view of the Boltzmann plot method. The temperature varies from 6,470 K at 0.05 nm to 4,990 K at about 2 mm from the target surface for the fundamental wavelength and from 6,250 to 4,880 K for the second harmonic. The electron density is ±300 calculated using the Stark broadened profiles recorded at laser pulse energy 130 mJ (for fundamental) and 72 mJ (for second harmonic) as 5:8·1016 and 6:9·1016 cm−3, respectively. These values decrease to 3:5·1015 and 4:9·1015 over a distance of 2 mm from the target surface, respectively. Moreover, we study the variation of Ne as a function of laser irradiance as well as its spatial variation from the target surface.
About the authors
M. Hanif
NUST College of E&ME (National University of Sciences & Technology)
Author for correspondence.
Email: hanif_muhammad@yahoo.com
Pakistan, Rawalpindi
M. Salik
Institute of Optoelectronics, Beijing Jiaotong University
Email: hanif_muhammad@yahoo.com
China, Beijing
M. A. Baig
National Center for Physics (NCP), Quaid-E-Azam University Campus
Email: hanif_muhammad@yahoo.com
Pakistan, Islamabad
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