Study the Effect of Concentration on the Evolution of Far-Field Diffraction Patterns of Bromocresol Purple and Congo Red Solution

Author:

Badran Hussain Ali,Abbas Abu Talib Y.,Fakher Alfahed R. K.

Abstract

Abstract Experimental evolution of the diffraction pattern of Bromocresol Purple (BCP) and Congo Red (COGR) Solutions, by diffraction ring technique under CW laser illumination is present. The two azo dyes, COGR dye and COGR dye, were studied for their absorbance spectra, as well as the diffraction rings experimental. The measurement rings were performed when the incident beam propagates through a quartz cell containing dye. Many diffraction rings were observed on the sensitive screen. Among the results we obtained are the diffraction rings at 0.07mM concentration, where the number of rings was 4 at the power of the 50 mW laser beam for the Bromocresol dye and three rings in the congo red dye. The nonlinear refractive index for the Bromocresol dye and congo red dye are found to be in the order of 0.11×10−8 cm2/Watt, 3.093×10−8 cm2/Watt, respectively.The efficiency of the ring pattern was found to depend on the concentration of the dye and the power of the laser.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference51 articles.

1. Study of thermal lens technique and third-order nonlinear susceptibility of PMMA base containing 5’,5”-dibromo-o cresolsulfophthalein;Badran;J. of Materials Science: Materials in Electronics,2017

2. surface profile, nonlinear reflective index and photophysical properties of curcumin compound;Badran;J. J. of Materials Science: Materials in Electronics,2018

3. Structural, morphological and Z-scan technique for a temperature controllable chemical reaction synthesis of zinc sulfide nanoparticles;Fakher Alfahed;Appl. Phys. B,2019

4. preparation and study of the electrical and optical properties of a new azo dye (4-acetaminophenol-[2-(4-azo)]-4-amino dipheylsulfone);Badran;J. Ovonic Res.,2012

5. Thermal lens and all optical switching of new organometallic compound doped polyacrylamide gel;Badran;Results Phys.,2014

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