Investigation of the nonlinear optical coefficients of gold nanoparticles by Z-scan method using the femtosecond laser pulses

The present work measured the sign and the amount of nonlinear optical absorption coefficient and nonlinear refractive index of gold nanoparticles by Z-scan method. The Ti: sapphire laser is used in two modes: continuous wave and pulsed with 60 fs duration and a repetition rate of 80 MHz at the wave...

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Main Authors: F. Hajiesmaeilbaigi, A.S. Motamedi, E.S. Bostandoost, R. Goodarzi
Format: Article
Language:fas
Published: Nuclear Science and Technology Research Institute 2021-09-01
Series:مجله علوم و فنون هسته‌ای
Subjects:
Online Access:https://jonsat.nstri.ir/article_1290_9bab5d1e431dda58e99ab96751e947e6.pdf
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author F. Hajiesmaeilbaigi
A.S. Motamedi
E.S. Bostandoost
R. Goodarzi
author_facet F. Hajiesmaeilbaigi
A.S. Motamedi
E.S. Bostandoost
R. Goodarzi
author_sort F. Hajiesmaeilbaigi
collection DOAJ
description The present work measured the sign and the amount of nonlinear optical absorption coefficient and nonlinear refractive index of gold nanoparticles by Z-scan method. The Ti: sapphire laser is used in two modes: continuous wave and pulsed with 60 fs duration and a repetition rate of 80 MHz at the wavelength of 800 nm, with an average power of 28 mW. Gold nanoparticles were obtained by the laser ablation method with 20 ns pulses and a repetition rate of 10 Hz in SDS solution. Due to using femtosecond laser pulses with a high repetition rate, thermal and electronic nonlinear effects appeared. The results were compared with a continuous wave Z-scan at the same wavelength and exposure power to eliminate the cumulative thermal effect and separate the electronic and thermal nonlinear coefficients. The electronic and thermal nonlinear absorption coefficients were obtained 15×10-5 and 125×10-5cm.W-1, respectively. Kerr de-focusing effect occurred in both electronic and thermal nonlinearity, and the nonlinear electronic and the thermal refractions were calculated -41×10-9 and -34×10-9cm2W-1, respectively. The experiments show that the nonlinear coefficients of the sample prepared in this research are larger than the values obtained for the samples made by the chemical method.
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spelling doaj.art-a55d74c6d8b1421db5467b2b9faaf36f2023-05-02T09:05:52ZfasNuclear Science and Technology Research Instituteمجله علوم و فنون هسته‌ای1735-18712676-58612021-09-014231710.24200/nst.2021.12901290Investigation of the nonlinear optical coefficients of gold nanoparticles by Z-scan method using the femtosecond laser pulsesF. Hajiesmaeilbaigi0A.S. Motamedi1E.S. Bostandoost2R. Goodarzi3Photonics and Quantum Technologies Research School, Nuclear Science and Technology Research Institute, AEOI, P.O.BOX: 143995-13, Tehran, IranPhotonics and Quantum Technologies Research School, Nuclear Science and Technology Research Institute, AEOI, P.O.BOX: 143995-13, Tehran, IranPhotonics and Quantum Technologies Research School, Nuclear Science and Technology Research Institute, AEOI, P.O.BOX: 143995-13, Tehran, IranPhotonics and Quantum Technologies Research School, Nuclear Science and Technology Research Institute, AEOI, P.O.BOX: 143995-13, Tehran, IranThe present work measured the sign and the amount of nonlinear optical absorption coefficient and nonlinear refractive index of gold nanoparticles by Z-scan method. The Ti: sapphire laser is used in two modes: continuous wave and pulsed with 60 fs duration and a repetition rate of 80 MHz at the wavelength of 800 nm, with an average power of 28 mW. Gold nanoparticles were obtained by the laser ablation method with 20 ns pulses and a repetition rate of 10 Hz in SDS solution. Due to using femtosecond laser pulses with a high repetition rate, thermal and electronic nonlinear effects appeared. The results were compared with a continuous wave Z-scan at the same wavelength and exposure power to eliminate the cumulative thermal effect and separate the electronic and thermal nonlinear coefficients. The electronic and thermal nonlinear absorption coefficients were obtained 15×10-5 and 125×10-5cm.W-1, respectively. Kerr de-focusing effect occurred in both electronic and thermal nonlinearity, and the nonlinear electronic and the thermal refractions were calculated -41×10-9 and -34×10-9cm2W-1, respectively. The experiments show that the nonlinear coefficients of the sample prepared in this research are larger than the values obtained for the samples made by the chemical method.https://jonsat.nstri.ir/article_1290_9bab5d1e431dda58e99ab96751e947e6.pdfz-scanfemtosecond laseroptical nonlinearitygold nanoparticles
spellingShingle F. Hajiesmaeilbaigi
A.S. Motamedi
E.S. Bostandoost
R. Goodarzi
Investigation of the nonlinear optical coefficients of gold nanoparticles by Z-scan method using the femtosecond laser pulses
مجله علوم و فنون هسته‌ای
z-scan
femtosecond laser
optical nonlinearity
gold nanoparticles
title Investigation of the nonlinear optical coefficients of gold nanoparticles by Z-scan method using the femtosecond laser pulses
title_full Investigation of the nonlinear optical coefficients of gold nanoparticles by Z-scan method using the femtosecond laser pulses
title_fullStr Investigation of the nonlinear optical coefficients of gold nanoparticles by Z-scan method using the femtosecond laser pulses
title_full_unstemmed Investigation of the nonlinear optical coefficients of gold nanoparticles by Z-scan method using the femtosecond laser pulses
title_short Investigation of the nonlinear optical coefficients of gold nanoparticles by Z-scan method using the femtosecond laser pulses
title_sort investigation of the nonlinear optical coefficients of gold nanoparticles by z scan method using the femtosecond laser pulses
topic z-scan
femtosecond laser
optical nonlinearity
gold nanoparticles
url https://jonsat.nstri.ir/article_1290_9bab5d1e431dda58e99ab96751e947e6.pdf
work_keys_str_mv AT fhajiesmaeilbaigi investigationofthenonlinearopticalcoefficientsofgoldnanoparticlesbyzscanmethodusingthefemtosecondlaserpulses
AT asmotamedi investigationofthenonlinearopticalcoefficientsofgoldnanoparticlesbyzscanmethodusingthefemtosecondlaserpulses
AT esbostandoost investigationofthenonlinearopticalcoefficientsofgoldnanoparticlesbyzscanmethodusingthefemtosecondlaserpulses
AT rgoodarzi investigationofthenonlinearopticalcoefficientsofgoldnanoparticlesbyzscanmethodusingthefemtosecondlaserpulses