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Optical nonlinearity enhanced by metal nanoparticle in CdTe quantum dots

机译:CdTe量子点中金属纳米粒子增强的光学非线性

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摘要

The optical nonlinearity of a CdTe quantum dot enhanced by a gold nanoparticle has been theoretically studied by employing the multi-bands effective mass method. The energy levels have been computed using 6×6 k.p model for the valence band. The semiconductor quantum dot-size-dependent third-order susceptibility of third harmonic generation in a CdTeAu nanocrystal complex has been analyzed. It is found that the metal nanoparticle enhances the optical nonlinearity of the semiconductor quantum dot due to the dipole/multipole interaction that will bring in the strong damping and the field enhancement. By choosing the radius of CdTe quantum dot, the third-order nonlinear susceptibility for third harmonic generation can be optimized for the one- and multi-photon resonance. Also, we can alter the optical nonlinearity by changing the ratio of semiconductormetal nanoparticle distance to the metal nanoparticle radius.
机译:理论上,通过多带有效质量法研究了金纳米粒子增强的CdTe量子点的光学非线性。对于价带,已经使用6×6 k.p模型计算了能级。分析了CdTeAu纳米晶复合物中三次谐波产生的半导体量子点大小相关的三次磁化率。发现由于偶极/多极相互作用,金属纳米颗粒增强了半导体量子点的光学非线性,这将带来强阻尼和场增强。通过选择CdTe量子点的半径,可以针对单光子和多光子共振优化三次谐波产生的三阶非线性磁化率。同样,我们可以通过改变半导体金属纳米粒子距离与金属纳米粒子半径的比率来改变光学非线性。

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