Investigation of the Optical Properties of Liquid Deposition Cuso4 thin Film

Authors

  • Nafie A. Almuslet  Department of laser Systems, Institute of laser, Sudan University of Science & Technology (www.sustech.edu) , almogranKhartoum, Khartoum, Sudan
  • Yousif H. Alsheikh  Department of Applied Physics & Mathematics, Omdurman Ahlia University, Omdurman, Khartoum, Sudan

Keywords:

Thin Films , Interference Fringes , Liquid Phase Deposition (LPD), Laser Assisted Deposition, Optical Properties of CuSO4

Abstract

Liquid Deposition was used to fabricate CuSO4 thin films on glass substrate. The thickness of the thin films was controlled via the interference fringes of diode laser (532 nm) transmitted from the thin films. The interference was used to calculate the thickness of the fabricated film . The transmission spectrum of the film with 266 nm thickness was recorded using different monochromatic light sources by measuring their intensities before and after deposition. The refractive indices and the absorption coefficients were calculated and plotted as functions of wavelengths.

References

  1. MA Sangamesha et al, EFFECT OF CONCENTRATION ON STRUCTURAL AND OPTICAL PROPERTIES OF CUS THIN FILMS, Journal of Research in Engineering and Technology, eISSN: 2319-1163 pISSN: 2321-7308
  2. Heaven Macleod A., thin films optical coating-course introduction in Optifab Technical Program,: http//SPIE.ORG/X1145.XML?:, 2011
  3. Jai Singh, (ed.) Optical properties of Condensed Matter and Applications, 2006 John Wiley & Sons Ltd. England.
  4. Hernández M. et al., Interferometry thickness determination of thin metallic films, Superficies y Vacío (9/ Diciembre), 1999, p. 283-285
  5. A.V. Valiulis and P. Silickas, Liquid phase deposition methods monitoring techniques influence for solid substrates and thin metal oxide film properties, Journal of Achievement in Materials and Manufacturing Engineering, Volume 24 Issue 1, September 2007.
  6. Physics –assignment, Interference in Thin films, 2012 http://www.physics-assignment.com/interference-in-thin-films
  7. Phillips, lamps and lighting/ Philips sodium spectra lamp 93122 products information, 2015. http//www.lighting-gallery.net/gallery/displayimage.php?album=2937&pos=28&pid=98522
  8. Phywe, Helium Neon Laser Products 8181-93 Info. 2007, https://www.phywe.de/en/geraetehierarchie/physics/modern-physics/quantum-physics/08181-93
  9. Shagghai Apolo, 1064/532 Q-switched Nd: YAG laser, Model Name HS-220 E datasheet, SN 110628003, Shanghai Apolo Medical Technology Co. Ltd. China.
  10. Biotechhealth, Omega XP laser system and product datasheet, 2011 http//www.biotechhealth.co.uk.
  11. PHYWE Naturwissenschaft und Technik, Digital Oscilloscope, Product info. Phywe Naturwissenschaft und Technik , 2007 Germany.
  12. Elhadi S. Eltayeb ,Utilization of Different Laser Systems to Determine the Optical Properties of Chloroform and Rhodamine 6G Thin-Films in Nanometer Scale, M.Sc. Thesis in Laser application in Physics; College of Graduate Studies-Sudan University of Science & Technology, 2007.
  13. A.M.Mousa and J.P. Ponpon, Growth of Pb Te films by laser induced evaporation of pressed Pb Te pellets, Eur. Phys. J. Appl. Phys.2006
  14. Geunther Karl H., Physical and Chemical Aspects in the Application of Thin Film on Optical Element, Optical Society of America, 1984
  15. PHYWE Naturwissenschaft und Technik, Digital Oscilloscope, Product info., Phywe Naturwissenschaft und Technik , 2007,Germany.

Downloads

Published

2015-12-25

Issue

Section

Research Articles

How to Cite

[1]
Nafie A. Almuslet, Yousif H. Alsheikh, " Investigation of the Optical Properties of Liquid Deposition Cuso4 thin Film , International Journal of Scientific Research in Science and Technology(IJSRST), Online ISSN : 2395-602X, Print ISSN : 2395-6011, Volume 1, Issue 5, pp.132-136, November-December-2015.