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金纳米棒中热载流子的反斯托克斯发射。

Anti-Stokes Emission from Hot Carriers in Gold Nanorods.

出版信息

Nano Lett. 2019 Feb 13;19(2):1067-1073. doi: 10.1021/acs.nanolett.8b04359. Epub 2019 Jan 25.

Abstract

The origin of light emission from plasmonic nanoparticles has been strongly debated lately. It is present as the background of surface-enhanced Raman scattering and, despite the low yield, has been used for novel sensing and imaging applications because of its photostability. Although the role of surface plasmons as an enhancing antenna is widely accepted, the main controversy regarding the mechanism of the emission is its assignment to either radiative recombination of hot carriers (photoluminescence) or electronic Raman scattering (inelastic light scattering). We have previously interpreted the Stokes-shifted emission from gold nanorods as the Purcell effect enhanced radiative recombination of hot carriers. Here we specifically focused on the anti-Stokes emission from single gold nanorods of varying aspect ratios with excitation wavelengths below and above the interband transition threshold while still employing continuous wave lasers. Analysis of the intensity ratios between Stokes and anti-Stokes emission yields temperatures that can only be interpreted as originating from the excited electron distribution and not a thermally equilibrated phonon population despite not using pulsed laser excitation. Consistent with this result as well as previous emission studies using ultrafast lasers, the power-dependence of the upconverted emission is nonlinear and gives the average number of participating photons as a function of emission wavelength. Our findings thus show that hot carriers and photoluminescence play a major role in the upconverted emission.

摘要

近年来,等离子体纳米粒子的发光起源一直存在激烈的争论。它作为表面增强拉曼散射的背景存在,尽管产率较低,但由于其光稳定性,已被用于新型传感和成像应用。尽管表面等离激元作为增强天线的作用已被广泛接受,但关于发光机制的主要争议是将其归因于热载流子的辐射复合(光致发光)或电子拉曼散射(非弹性光散射)。我们之前曾将金纳米棒的斯托克斯频移发射解释为热载流子的Purcell 增强辐射复合。在这里,我们特别关注了在连续波激光激发下,激发波长低于和高于能带跃迁阈值时,具有不同纵横比的单个金纳米棒的反斯托克斯发射。对斯托克斯和反斯托克斯发射强度比的分析得出的温度只能解释为源于激发电子分布,而不是热平衡声子分布,尽管没有使用脉冲激光激发。与这一结果以及以前使用超快激光的发射研究一致,上转换发射的功率依赖性是非线性的,并给出了发射波长的平均参与光子数。因此,我们的发现表明,热载流子和光致发光在上转换发射中起着重要作用。

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