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具有铝纳米盘亚波长晶格的混合结构中锗/硅量子点的发射增强

Emission Enhancement of Ge/Si Quantum Dots in Hybrid Structures with Subwavelength Lattice of Al Nanodisks.

作者信息

Zinovyev Vladimir A, Smagina Zhanna V, Zinovieva Aigul F, Bloshkin Aleksei A, Dvurechenskii Anatoly V, Rodyakina Ekaterina E, Stepikhova Margarita V, Peretokin Artem V, Novikov Alexey V

机构信息

Rzhanov Institute of Semiconductor Physics, Siberian Branch of Russian Academy of Sciences, 630090 Novosibirsk, Russia.

Department of Physics, Novosibirsk State University, 630090 Novosibirsk, Russia.

出版信息

Nanomaterials (Basel). 2023 Aug 25;13(17):2422. doi: 10.3390/nano13172422.

Abstract

The effects of resonance interaction of plasmonic and photonic modes in hybrid metal-dielectric structures with square Al nanodisk lattices coupled with a Si waveguide layer were investigated using micro-photoluminescence (micro-PL) spectroscopy. As radiation sources, GeSi quantum dots were embedded in the waveguide. A set of narrow PL peaks superimposed on the broad bands were observed in the range of quantum dot emissions. At optimal parameters of Al nanodisks lattices, almost one order increasing of PL intensity was obtained. The experimental PL spectra are in good agreement with results of theoretical calculations. The realization of high-quality bound states in the continuum was confirmed by a comparative analysis of the experimental spectra and theoretical dispersion dependences. The results demonstrated the perspectives of these type structures for a flat band realization and supporting the slow light.

摘要

利用微光致发光(micro-PL)光谱研究了具有方形铝纳米盘晶格且与硅波导层耦合的混合金属-电介质结构中,等离子体和光子模式的共振相互作用的影响。作为辐射源,锗硅量子点被嵌入到波导中。在量子点发射范围内观察到一组叠加在宽带之上的窄PL峰。在铝纳米盘晶格的最佳参数下,PL强度几乎提高了一个数量级。实验得到的PL光谱与理论计算结果吻合良好。通过对实验光谱和理论色散关系的对比分析,证实了连续统中高质量束缚态的实现。结果表明了这类结构在实现平带和支持慢光方面的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/232b/10490227/ce6ffbedc7fa/nanomaterials-13-02422-g001.jpg

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