Study of archaeological coins of different dynasties using libs coupled with multivariate analysis

Laser Induced Breakdown Spectroscopy (LIBS) is an atomic emission spectroscopic technique having unique capability of an in-situ monitoring tool for detection and quantification of elements present in different artifacts. Archaeological coins collected form G.R. Sharma Memorial Museum; University of...

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Veröffentlicht in:Optics and lasers in engineering 2016-04, Vol.79, p.29-38
Hauptverfasser: Awasthi, Shikha, Kumar, Rohit, Rai, G.K., Rai, A.K.
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Sprache:eng
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Zusammenfassung:Laser Induced Breakdown Spectroscopy (LIBS) is an atomic emission spectroscopic technique having unique capability of an in-situ monitoring tool for detection and quantification of elements present in different artifacts. Archaeological coins collected form G.R. Sharma Memorial Museum; University of Allahabad, India has been analyzed using LIBS technique. These coins were obtained from excavation of Kausambi, Uttar Pradesh, India. LIBS system assembled in the laboratory (laser Nd:YAG 532nm, 4ns pulse width FWHM with Ocean Optics LIBS 2000+ spectrometer) is employed for spectral acquisition. The spectral lines of Ag, Cu, Ca, Sn, Si, Fe and Mg are identified in the LIBS spectra of different coins. LIBS along with Multivariate Analysis play an effective role for classification and contribution of spectral lines in different coins. The discrimination between five coins with Archaeological interest has been carried out using Principal Component Analysis (PCA). The results show the potential relevancy of the methodology used in the elemental identification and classification of artifacts with high accuracy and robustness. •Elemental analysis of archeological coins of Kaushambi India have been studied using LIBS.•Elements analysis can be useful for authenticity, metrological knowledge belong to different dynasties.•LIBS in combination with PCA has been used for the classification of the different coins.
ISSN:0143-8166
1873-0302
DOI:10.1016/j.optlaseng.2015.11.005