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等离子体粒子增强VO中的光热效应和相变

Photothermal Effect and Phase Transition in VO Enhanced by Plasmonic Particles.

作者信息

Kaydashev Vladimir, Khlebtsov Boris, Kutepov Maxim, Nikolskiy Anatoliy, Kozakov Alexey, Konstantinov Alexey, Mikheykin Alexey, Karapetyan Gevork, Kaidashev Evgeni

机构信息

Laboratory of Nanomaterials, Southern Federal University, 200/1 Stachki Ave., 344090 Rostov-on-Don, Russia.

Institute of Biochemistry and Physiology of Plants and Microorganisms RAS, Saratov Scientific Center, 13 Entuziastov Ave., 410049 Saratov, Russia.

出版信息

Materials (Basel). 2023 Mar 24;16(7):2579. doi: 10.3390/ma16072579.

Abstract

Phase change metasurfaces based on VO, which are pre-heated with electric current and optically addressed by projected structured light hologram, are considered to become a new paradigm in programmed THz/middle IR flat optics. Macroscopic quasi-homogeneous arrays of Au nanoparticles show large near IR absorption and a significant photothermal effect capable of boosting a light-triggered switching of VO and are to be carefully examined. We propose a new approach to simultaneously probe the altered temperature and electric conductivity of a hybrid Au particle-VO film composite by monitoring a phase shift and attenuating a surface acoustic wave in a YX128° cut LiNbO substrate. The method shows a temperature resolution of 0.1 °C comparable with the best existing techniques for studying nanoobjects and surfaces. The laser-induced photothermal effects were characterized in a macroscopic array of Au nanostars (AuNSts) with different surface coverage. In a monolayer of 10 nm Au, coupled plasmonic nanoparticles were deposited on the LiNbO substrate. An optically triggered insulator-metal transition assisted by photothermal effect in AuNSts/VO/TiO/LiNbO composites was studied at varied light power. We believe that the proposed SAW-based method is of significant importance for the characterization and optimization of radiation absorbing or/and electrically heated elements of metasurfaces and other devices for lab-on-chip and optical communication/processor technology.

摘要

基于VO的相变超表面,通过电流预热并由投影结构光全息图进行光学寻址,被认为将成为可编程太赫兹/中红外平面光学的新范式。金纳米颗粒的宏观准均匀阵列显示出较大的近红外吸收和显著的光热效应,能够促进VO的光触发开关,需要仔细研究。我们提出了一种新方法,通过监测YX128°切割的LiNbO衬底中的相移和衰减表面声波,同时探测混合金颗粒-VO薄膜复合材料的温度变化和电导率。该方法显示出0.1°C的温度分辨率,与研究纳米物体和表面的现有最佳技术相当。在具有不同表面覆盖率的金纳米星(AuNSts)宏观阵列中表征了激光诱导的光热效应。在10nm金的单层中,耦合等离子体纳米颗粒沉积在LiNbO衬底上。研究了在不同光功率下,AuNSts/VO/TiO/LiNbO复合材料中由光热效应辅助的光触发绝缘体-金属转变。我们认为,所提出的基于表面声波的方法对于超表面以及其他用于芯片实验室和光通信/处理器技术的器件的辐射吸收或/和电加热元件的表征和优化具有重要意义。

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