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非共振飞秒 regime 下 PbS 量子点自支撑薄膜的非线性光学性质。

Nonlinear optical properties of free standing films of PbS quantum dots in the nonresonant femtosecond regime.

作者信息

Kurian Pushpa Ann, Vijayan C, Nag Amit, Goswami Debabrata

机构信息

Department of Physics, Indian Institute of Technology, Madras -600036, India.

出版信息

Proc SPIE Int Soc Opt Eng. 2007 Sep 17;6639:66390M1-66390M7. doi: 10.1117/12.733034.

Abstract

Devices based on optical technology for high speed communication networks require materials with large nonlinear optical response in the ultrafast regime. Nonlinear optical materials have also attracted wide attention as potential candidates for the protection of optical sensors and eyes while handling lasers. Optical limiters have a constant transmittance at low input influence and a decrease in transmittance at higher fluences and are based on a variety of mechanisms such as nonlinear refraction, nonlinear scattering, multiphoton absorption and free carrier absorption. As we go from bulk to nanosized materials especially in the strong quantum confinement regime where radius of the nanoparticle is less than the bulk exciton Bohr radius, the optical nonlinearity is enhanced due to quantum confinement effect. This paper is on the ultrafast nonresonant nonlinearity in free standing films of PbS quantum dots stabilized in a synthetic glue matrix by a simple chemical route which provides flexibility of processing in a variety of physical forms. Optical absorption spectrum shows significant blue shift from the bulk absorption onset indicating strong quantum confinement. PbS quantumdots of mean size 3.3nm are characterized by X-ray diffraction and transmission electron microscopy. The mechanism of nonlinear absorption giving rise to optical limiting is probed using open z-scan technique with laser pulses of 150 fs pulse duration at 780 nm and the results are presented in the nonresonant femtosecond regime. Irradiance dependence on nonlinear absorption are discussed.

摘要

用于高速通信网络的基于光学技术的器件需要在超快 regime 中具有大非线性光学响应的材料。非线性光学材料作为处理激光时保护光学传感器和眼睛的潜在候选材料也引起了广泛关注。光学限幅器在低输入影响下具有恒定的透射率,而在较高通量下透射率会降低,并且基于多种机制,如非线性折射、非线性散射、多光子吸收和自由载流子吸收。当我们从块状材料转变为纳米尺寸的材料时,特别是在纳米粒子半径小于块状激子玻尔半径的强量子限制 regime 中,由于量子限制效应,光学非线性会增强。本文研究的是通过简单化学路线在合成胶水基质中稳定的 PbS 量子点独立薄膜中的超快非共振非线性,该路线提供了以多种物理形式进行加工的灵活性。光学吸收光谱显示从块状吸收起始有明显的蓝移,表明存在强量子限制。平均尺寸为 3.3nm 的 PbS 量子点通过 X 射线衍射和透射电子显微镜进行表征。使用脉宽为 150 fs、波长为 780 nm 的激光脉冲的开放 z 扫描技术探测产生光学限幅的非线性吸收机制,并在非共振飞秒 regime 中给出结果。讨论了辐照度对非线性吸收的依赖性。

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本文引用的文献

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Nanotechnology. 2007 Feb 21;18(7):075708. doi: 10.1088/0957-4484/18/7/075708. Epub 2007 Jan 12.
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