Investigation of nonlinear optical properties of Sudan red G dye solutions using diffraction rings patterns and z-scan technique V
DOI:
https://doi.org/10.32792/utq/utjsci/v11i2.1265Abstract
Nonlinear optical properties of Sudan red G (SRG) dye solutions in DMF solvent at different concentrations using diffraction ring patterns and z-scan techniques were investigated. The samples were exposed to two different wavelengths of light sources, continuous wave laser operating at 532 nm green laser and blue laser operating at 473 nm. The diffraction ring patterns of the SRG solutions at three different dye concentrations and over laser power ranging from 5 to 50 mW have been recorded, showing asignificant nonlinear optical behaviors. The findings show that the number of diffraction rings increases as laser power increases, leading to increase the nonlinear refractive index (n2). It was also observed that when the dye concentration increases from 0.25 mM to 1 mM and at the incident intensity of 6800 W/cm2 , the refractive index increases from 0.78×10-6 to 1.33 cm2/W for the sample exposed by green laser and from 0.48×10-6 to 1.18×10-6 cm2/W for the sample exposed by blue laser. From open and closed aperture z-scan curves, the nonlinear absorption coefficient (β) and nonlinear refractive index of the samples were evaluated at laser intensity of 680 W/cm2. As dye concentration increases from 0.05 mM to 0.1 mM, β increases from ~6.9×10-3 cm/W to ~11.16×10-3 cm/W at wavelength 532 nm and from ~5.78×10-3 cm/W to ~10.08×10-3 cm/W at wavelength 473 nm. Moreover, the value of n2 are increases from ~1.23×10-7 cm2/W to ~4.25×10-7 cm2/W at wavelength 532 nm and from ~0.8×10-7 cm2/W to ~3.33×10-7 cm2/W at wavelengt
Received: 2024-06-03
Revised: 2024-06-19
Accepted: 2024-07-27
References
W. H. Jabber, Q.M.A. Hassan, and F. A. Al-Saymari, "Determination of Linear, Nonlinear, and the Optical Limiting Properties of Sudan Brown RR in a Solid Film and Solution", Journal of Fluorescence, vol. 33, pp. 2369–2380, 2023.
J. Lang, K. Tatsumi, H. Kawaguchi, "Microwave irradiation synthesis of Mo(W)/Tl/S linear chainsand their nonlinear optical properties in solution ", Inorg Chem, vol.35, pp.7924–7927,1996.
A.S. AL-Asadi, QMA. Hassan, A.F. Abdulkader, H. Bakr, C.A. Emshary, "Enhancement of the linear, nonlinear and optical limiting properties of epoxy resin decorated by zinc oxide nanoparticles ,"Phys Scr., vol. 95, pp.085503,2020.
Q.H.Wang, K. Kalantar-Zadeh, A. Kis, J.N Coleman, " Electronics and optoelectronics of two-dimensional transition metal dichalcogenides” ,Nat Nanotechnol, vol. 30, pp. 699–712, 2012
C.Gayathri, A. Ramalingam, "Investigation of optical nonlinearities of an azo dye using a 532 nm diode-pumped Nd: YAG laser", Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, vol. 69, pp. 96-99,2008.
S. Manickasundaram, P. Kannan, Q.M.A. Hassan, P.K. Palanisamy,” Azo dye-based poly(alkyloxymethacrylate)s and their spacer effect on optical data storage", J Mater Sci Mater Electron, vol. 19, pp.1045–1053,2008.
F.A. Almashal, Q.M.A. Hassan, C.A. Emshary, H.A Sultan, A.M. Dhumad, “Spectroscopic and thermal nonlinearity study of a Schiff base compound", Opt. Mater, vol.100, pp. 109703,2020.
D.A. Hassan, H.A. Sultan, R.H. Al-Asadi, Q.MA. Hassan, C.A. Emshary, T. Fahad,” DFT calculation and nonlinear optical properties of (E)-(2)-(((8-hydroxyquinolin-5yl) diazenyl)- 5-sulfamoylpheneyl) mercury (II) chloride", Phys B Condens Matter , vol.639, pp. 413908,2022.
A.M. Jassem, Q.M.A. Hassan,C.A Emshary, H.A. Sultan, F.A. Almashal,W.A. Radhi ,” Synthesis and optical nonlinear properties performance of azonaphthol dye", Phys Scr, vol. 96,pp. 025503,2021.
G.S. He, Q. Zheng, P.N. Prasad, R. Helgeson, F. Wud"Nonlinear optical stabilization of 1064-nm laser pulses with a two-photon absorbing liquid-dye salt system", Applied optics, vol. 44, pp 3560-3564,2005.
F Castet, V. Rodriguez, J. Pozzo, L Ducasse, A. Plaquet, B. Champagn"Design and characterization of molecular nonlinear optical switches", Accounts of chemical research, vol.46, pp. 2656-2665,2013.
[12] H.J. Bakker, P.C.M Planken, L. Kuipers, A. Lagendijk, "Phase modulation in second-order nonlinear-optical processes", Physical Review A, 42, pp. 4085,1990.
A. Bafana, S.S. Devi, T. Chakrabarti, "Azo dyes: past, present and the future", Environmental Reviews, vol.19, pp. 350-371,2011.
A. U . Nisa , N . Zahra, and Y . N . Butt ,” Sudan dyes and their potential health effects ", Mol. Biol, vol. 49 ,pp.29-35, 2016.
W.H. Jabber, Q.M.A. Hassan, and F. A. Al-Saymari,"Identification of the nonlinear optical properties for a mixture of Sudan yellow 3G and poly methyl methacrylate for optical limiting applications," Physica B: Condensed Matter, vol. 669, pp. 415305,2023.
W.H. Jabber, Q.M.A. Hassan, and F. A. Al-Saymari, "Evaluation of surface roughness, linear and nonlinear optical parameters of a mixture of sudan black b and polymer films for optical limiting application," Optik, vol. 283 ,pp. 170938,2023.
R.W. Boyd, Nonlinear Optics, second ed., Academic Press, New York, 2003.
T. He, C. Wang, "The study on the nonlinear optical response of Sudan I", Optics communications, vol. 281, pp.4121-4125,2008.
K.A. Al-Timimy, Q.M.A. Hassan, H.A. Sultan, C.A. Emshary,"Solvents effect on the optical nonlinear properties of the sudan iv," Optik ,vol.224 ,pp. 165398,2020.
M.S. Masoud, R.M. Elsamra, S.S. Hemdan,”Solvent, substituents and pH effects towards the spectral shifts of some highly colored indicators", Journal of the Serbian Chemical Society, 82, 851-864, (2017).
A.H.Ali, H.A.Sultan, Q.M.A.Hassan, C.A.Emshary,"Thermal and Nonlinear Optical Properties of Sudan III", Journal of Fluorescence, vol.34, pp. 635-653,2023.
K. Ogusu, Y. Kohtani, H.Shao,” Laser-induced diffraction rings from an absorbing solution", Opt Rev, vol. 3, pp.232–234,1996.
M. Sheik-Bahae, A.A Said. "Sensitive
measurement of optical nonlinearities using a single beam", IEEE journal of quantum electronics, vol. 26, pp.760-769,1990.
Published
License
Copyright (c) 2024 University of Thi-Qar Journal of Science
This work is licensed under a Creative Commons Attribution 4.0 International License.