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一种用于胶体纳米片光增益的模型。

A model for optical gain in colloidal nanoplatelets.

作者信息

Li Qiuyang, Lian Tianquan

机构信息

Department of Chemistry , Emory University , 1515 Dickey Drive, NE , Atlanta , GA 30322 , USA . Email:

出版信息

Chem Sci. 2017 Nov 13;9(3):728-734. doi: 10.1039/c7sc04294a. eCollection 2018 Jan 21.

Abstract

Cadmium chalcogenide nanoplatelets (NPLs) and their heterostructures have been reported to have low gain thresholds and large gain coefficients, showing great potential for lasing applications. However, the further improvement of the optical gain properties of NPLs is hindered by a lack of models that can account for their optical gain characteristics and predict their dependence on the properties (such as lateral size, concentration, and/or optical density). Herein, we report a systematic study of optical gain (OG) in 4-monolayer thick CdSe NPLs by both transient absorption spectroscopy study of colloidal solutions and amplified spontaneous emission (ASE) measurement of thin films. We showed that comparing samples with the same optical density at the excitation, the OG threshold is not dependent of the NPL lateral area, while the saturation gain amplitude is dependent on the NPL lateral area when comparing samples with the same optical density at the excitation wavelength. Both the OG and ASE thresholds increase with the optical density at the excitation wavelength for samples of the same NPL thickness and lateral area. We proposed an OG model for NPLs that can successfully account for the observed lateral area and optical density dependences. The model reveals that OG originates from stimulated emission from the bi-exciton states and the OG threshold is reached when the average number of excitons per NPL is about half the occupation of the band-edge exciton states. The model can also rationalize the much lower OG thresholds in the NPLs compared to QDs. This work provides a microscopic understanding of the dependence of the OG properties on the morphology of the colloidal nanocrystals and important guidance for the rational optimization of the lasing performance of NPLs and other 1- and 2-dimensional nanocrystals.

摘要

据报道,硫属镉化物纳米片(NPLs)及其异质结构具有低增益阈值和大增益系数,在激光应用方面显示出巨大潜力。然而,由于缺乏能够解释其光学增益特性并预测其对性质(如横向尺寸、浓度和/或光密度)依赖性的模型,NPLs光学增益特性的进一步改善受到阻碍。在此,我们通过对胶体溶液的瞬态吸收光谱研究和薄膜的放大自发发射(ASE)测量,对4单层厚的CdSe NPLs中的光学增益(OG)进行了系统研究。我们表明,在激发时比较具有相同光密度的样品,OG阈值不依赖于NPL的横向面积,而在激发波长下比较具有相同光密度的样品时,饱和增益幅度依赖于NPL的横向面积。对于相同NPL厚度和横向面积的样品,OG和ASE阈值均随激发波长下的光密度增加而增加。我们提出了一个NPLs的OG模型,该模型能够成功地解释观察到的横向面积和光密度依赖性。该模型表明,OG源于双激子态的受激发射,当每个NPL的激子平均数量约为带边激子态占据数的一半时,达到OG阈值。该模型还可以解释NPLs中OG阈值比量子点低得多的原因。这项工作提供了对OG特性对胶体纳米晶体形态依赖性的微观理解,并为合理优化NPLs和其他一维和二维纳米晶体的激光性能提供了重要指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9615/5870475/8dc475522649/c7sc04294a-f1.jpg

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