Development of a localized surface plasmon-enhanced electron beam-pumped nanoscale light source for electron beam excitation-assisted optical microscopy.

Atsushi Nakamura, Shunpei Shiba, Kei Hosomi, Atsushi Ono, Yoshimasa Kawata, Wataru Inami
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Abstract

We have demonstrated localized surface plasmon (LSP)-enhanced cathodoluminescence (CL) from an atomic layer deposition (ALD)-grown Al2O3/ZnO/Al2O3 heterostructure to develop a bright nanometer-scale light source for an electron beam excitation-assisted (EXA) optical microscope. Three types of metals, Ag, Al, and Au, were compared, and an 181-fold enhancement of CL emission was achieved with Ag nanoparticles (NPs), with the plasmon resonance wavelength close to the emission wavelength energy of ZnO. The enhanced emission is plausibly attributed to LSP/exciton coupling. However, it is also attributed to an increase in coupling efficiency with penetration depth and also to an increase in light extraction efficiency by grading the refractive indices at the heterostructure.

开发用于电子束激发辅助光学显微镜的局部表面等离子体增强电子束泵浦纳米级光源。
我们展示了原子层沉积(ALD)生长的 Al2O3/ZnO/Al2O3 异质结构的局部表面等离子体(LSP)增强阴极荧光(CL),为电子束激发辅助(EXA)光学显微镜开发了一种明亮的纳米级光源。通过对 Ag、Al 和 Au 三种金属进行比较,Ag 纳米粒子(NPs)的 CL 发射增强了 181 倍,等离子共振波长接近 ZnO 的发射波长能量。发射增强可能归因于 LSP/激子耦合。不过,这也归因于耦合效率随穿透深度的增加而提高,以及异质结构的折射率分级提高了光萃取效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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