Cargando…

Variation of Nonlinear Refraction and Three-Photon Absorption of Indium–Tin Oxide Quantum Dot Thin Films and Solutions in Near Infrared Range

We characterize the nonlinear optical properties of indium–tin oxide (ITO) quantum dots (QDs) in the IR range using the Z-scan method. We present results of three-photon absorption (3PA), third harmonic generation (3HG), and Kerr-effect-induced nonlinear refraction in ITO QDs. Z-scan measurements we...

Descripción completa

Detalles Bibliográficos
Autores principales: Bundulis, Arturs, Berzina, Anete, Kim, Vyacheslav V., Polyakov, Boris, Novikovs, Aleksandrs, Ganeev, Rashid A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10459362/
https://www.ncbi.nlm.nih.gov/pubmed/37630903
http://dx.doi.org/10.3390/nano13162320
_version_ 1785097393289560064
author Bundulis, Arturs
Berzina, Anete
Kim, Vyacheslav V.
Polyakov, Boris
Novikovs, Aleksandrs
Ganeev, Rashid A.
author_facet Bundulis, Arturs
Berzina, Anete
Kim, Vyacheslav V.
Polyakov, Boris
Novikovs, Aleksandrs
Ganeev, Rashid A.
author_sort Bundulis, Arturs
collection PubMed
description We characterize the nonlinear optical properties of indium–tin oxide (ITO) quantum dots (QDs) in the IR range using the Z-scan method. We present results of three-photon absorption (3PA), third harmonic generation (3HG), and Kerr-effect-induced nonlinear refraction in ITO QDs. Z-scan measurements were carried out for the QDs solution, while 3HG was demonstrated using QD thin films. The Kerr-induced nonlinear refractive index was analyzed along the 800–950 nm range showing an increase in this parameter from −6.7 × 10(−18) to −1.5 × 10(−17) m(2) W(−1). At longer wavelengths (1000–1100 nm), the higher-order effects started to contribute to a nonlinear refractive index. The 3PA coefficient at 950 nm was measured to be 1.42 × 10(−25) m(3)/W(2). We discuss the peculiarities in the wavelength-dependent variation of the coefficient of nonlinear absorption responsible for 3PA in the range of 800–1150 nm. Third harmonic generation was analyzed in the 1200–1550 nm spectral range. The absolute value of 3HG conversion efficiency in the 150 nm thick film at the wavelength of laser radiation (1350 nm) was estimated to be ~10(–5).
format Online
Article
Text
id pubmed-10459362
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-104593622023-08-27 Variation of Nonlinear Refraction and Three-Photon Absorption of Indium–Tin Oxide Quantum Dot Thin Films and Solutions in Near Infrared Range Bundulis, Arturs Berzina, Anete Kim, Vyacheslav V. Polyakov, Boris Novikovs, Aleksandrs Ganeev, Rashid A. Nanomaterials (Basel) Article We characterize the nonlinear optical properties of indium–tin oxide (ITO) quantum dots (QDs) in the IR range using the Z-scan method. We present results of three-photon absorption (3PA), third harmonic generation (3HG), and Kerr-effect-induced nonlinear refraction in ITO QDs. Z-scan measurements were carried out for the QDs solution, while 3HG was demonstrated using QD thin films. The Kerr-induced nonlinear refractive index was analyzed along the 800–950 nm range showing an increase in this parameter from −6.7 × 10(−18) to −1.5 × 10(−17) m(2) W(−1). At longer wavelengths (1000–1100 nm), the higher-order effects started to contribute to a nonlinear refractive index. The 3PA coefficient at 950 nm was measured to be 1.42 × 10(−25) m(3)/W(2). We discuss the peculiarities in the wavelength-dependent variation of the coefficient of nonlinear absorption responsible for 3PA in the range of 800–1150 nm. Third harmonic generation was analyzed in the 1200–1550 nm spectral range. The absolute value of 3HG conversion efficiency in the 150 nm thick film at the wavelength of laser radiation (1350 nm) was estimated to be ~10(–5). MDPI 2023-08-12 /pmc/articles/PMC10459362/ /pubmed/37630903 http://dx.doi.org/10.3390/nano13162320 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bundulis, Arturs
Berzina, Anete
Kim, Vyacheslav V.
Polyakov, Boris
Novikovs, Aleksandrs
Ganeev, Rashid A.
Variation of Nonlinear Refraction and Three-Photon Absorption of Indium–Tin Oxide Quantum Dot Thin Films and Solutions in Near Infrared Range
title Variation of Nonlinear Refraction and Three-Photon Absorption of Indium–Tin Oxide Quantum Dot Thin Films and Solutions in Near Infrared Range
title_full Variation of Nonlinear Refraction and Three-Photon Absorption of Indium–Tin Oxide Quantum Dot Thin Films and Solutions in Near Infrared Range
title_fullStr Variation of Nonlinear Refraction and Three-Photon Absorption of Indium–Tin Oxide Quantum Dot Thin Films and Solutions in Near Infrared Range
title_full_unstemmed Variation of Nonlinear Refraction and Three-Photon Absorption of Indium–Tin Oxide Quantum Dot Thin Films and Solutions in Near Infrared Range
title_short Variation of Nonlinear Refraction and Three-Photon Absorption of Indium–Tin Oxide Quantum Dot Thin Films and Solutions in Near Infrared Range
title_sort variation of nonlinear refraction and three-photon absorption of indium–tin oxide quantum dot thin films and solutions in near infrared range
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10459362/
https://www.ncbi.nlm.nih.gov/pubmed/37630903
http://dx.doi.org/10.3390/nano13162320
work_keys_str_mv AT bundulisarturs variationofnonlinearrefractionandthreephotonabsorptionofindiumtinoxidequantumdotthinfilmsandsolutionsinnearinfraredrange
AT berzinaanete variationofnonlinearrefractionandthreephotonabsorptionofindiumtinoxidequantumdotthinfilmsandsolutionsinnearinfraredrange
AT kimvyacheslavv variationofnonlinearrefractionandthreephotonabsorptionofindiumtinoxidequantumdotthinfilmsandsolutionsinnearinfraredrange
AT polyakovboris variationofnonlinearrefractionandthreephotonabsorptionofindiumtinoxidequantumdotthinfilmsandsolutionsinnearinfraredrange
AT novikovsaleksandrs variationofnonlinearrefractionandthreephotonabsorptionofindiumtinoxidequantumdotthinfilmsandsolutionsinnearinfraredrange
AT ganeevrashida variationofnonlinearrefractionandthreephotonabsorptionofindiumtinoxidequantumdotthinfilmsandsolutionsinnearinfraredrange