2-巯基丙酸钝化Ag2Se量子点胶体溶液在10 ns YAG:Nd3+激光脉冲场中的非线性光学性质

IF 1.5 4区 物理与天体物理 Q3 OPTICS
O. V. Ovchinnikov, A. I. Zvyagin, M. S. Smirnov, I. G. Grevtseva, S. V. Aslanov, A. Hussein
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引用次数: 0

摘要

本文研究了平均粒径为2.0 ~ 2.5 nm的2-巯基丙酸(以下简称Ag2Se/2-MPA) Ag2Se胶体量子点(QDs)在10 ns YAG:Nd3+激光脉冲下的非线性光学性质。采用开孔设计的z扫描方法,发现Ag2Se/2-MPA胶体量子点中的非线性吸收是由于反向饱和吸收(RSA)。此外,在闭孔方案下,z扫描表现出非线性折射,表现为探测辐射的散焦。发现了激光脉冲的非线性吸收和折射水平与硒前驱体浓度的关系,硒前驱体浓度影响了纳米晶体的结晶条件和形成的纳米晶体的非化学计量程度,以及悬垂键的浓度。得到的模式表明局域态参与了RSA过程,局域态种群的变化决定了观测到的离焦效应。图形抽象
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear optical properties of colloidal solutions of Ag2Se quantum dots passivated with 2-Mercaptopropionic acid in the field of 10 ns YAG:Nd3+ laser pulses

The results of a study of the nonlinear optical properties of Ag2Se colloidal quantum dots (QDs) passivated with 2-mercaptopropionic acid (hereinafter Ag2Se/2-MPA) with an average size of 2.0–2.5 nm in the field of 10 ns YAG:Nd3+ laser pulses are presented. Using the Z-scan method in an open aperture design, it was found that the nonlinear absorption in Ag2Se/2-MPA colloidal QDs is due to reverse saturation absorption (RSA). In addition, Z-scanning in a closed-aperture scheme demonstrated nonlinear refraction, which manifested itself in the form of defocusing of the probing radiation. Dependences of the level of nonlinear absorption and refraction of laser pulses on the concentration of the Se precursor were discovered, which affects the crystallization conditions and the degree of nonstoichiometry of the formed nanocrystals, as well as the concentration of dangling bonds. The obtained patterns indicate the participation of localized states in the RSA process, and changes in the population of localized states determine the observed defocusing effect.

Graphical abstract

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来源期刊
The European Physical Journal D
The European Physical Journal D 物理-物理:原子、分子和化学物理
CiteScore
3.10
自引率
11.10%
发文量
213
审稿时长
3 months
期刊介绍: The European Physical Journal D (EPJ D) presents new and original research results in: Atomic Physics; Molecular Physics and Chemical Physics; Atomic and Molecular Collisions; Clusters and Nanostructures; Plasma Physics; Laser Cooling and Quantum Gas; Nonlinear Dynamics; Optical Physics; Quantum Optics and Quantum Information; Ultraintense and Ultrashort Laser Fields. The range of topics covered in these areas is extensive, from Molecular Interaction and Reactivity to Spectroscopy and Thermodynamics of Clusters, from Atomic Optics to Bose-Einstein Condensation to Femtochemistry.
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