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Nonlinear Responses and Optical Limitation of Copper Nanoparticles by Z-scan Method

Mina Eslamifar, Mohammad Eghbali

2024Journal of Optics and Photonics Research15 citationsDOIOpen Access PDF

Abstract

Recently, copper particles in nano dimensions have been gaining attention because they have advanced features and potential applications in various fields. This work studies the nonlinear optical performance of copper nanoparticles. We utilized laser ablation to create copper nanoparticles. In this technique, a piece of copper in distilled water is irradiated using the laser beam. Laser ablation was done for 30 min. The optical nonlinearities are measured by means of the Z-scan technology. The open-aperture Z-scan experiments showed that Cu nanoparticles have strong nonlinear absorption. Through a closed aperture Z-scan experiment, we could analyze the nonlinear refraction of sample. We analyze the optical limiting effect of copper nanoparticles. A theoretical model is presented and shows that at high laser light intensity, nonlinear light scattering occurs. By analyzing the experimental data with the presented model, the values of optical nonlinearities of copper particles were found to be n2=0.8×10-19m2w-1 and γ=1.46×10-13m/W, respectively. Our work confirmed that Cu nanoparticles show outstanding nonlinear optical features, which can cause the development of nonlinear optics. Received: 8 September 2023 | Revised: 2 January 2024 | Accepted: 3 January 2024 Conflicts of InterestThe authors declare that they have no conflicts of interest to this work. Data Availability Statement Data sharing is not applicable to this article as no new data were created or analyzed in this study.

Topics & Concepts

CopperNanoparticleZ-scan techniqueMaterials scienceLaser ablationLaserLaser ablation synthesis in solutionOpticsNonlinear opticsNonlinear systemRefractionScatteringAbsorption (acoustics)OptoelectronicsNanotechnologyLaser power scalingComposite materialX-ray laserMetallurgyPhysicsQuantum mechanicsNonlinear Optical Materials StudiesLaser-Ablation Synthesis of NanoparticlesGold and Silver Nanoparticles Synthesis and Applications