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Burstein-Moss Effect Behind Au Surface Plasmon Enhanced Intrinsic Emission of ZnO Microdisks

机译:金表面等离激元背后的Burstein-Moss效应增强了ZnO微盘的本征发射

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摘要

In this paper, ZnO microdisks with sputtering of Au nanoparticles were prepared to explore their plasmon/exciton coupling effect. An obvious blue shift and enhanced excitonic emission intensity were observed in the PL spectra of as-grown and Au-sputtered ZnO samples at room temperature. The investigation on the absorption spectra and temperature-dependent PL spectra has been demonstrated the Burstein-Moss effect behind the optical phenomena. These results revealed the coupling dynamics between the metal localized surface plasmon and semiconductor exciton.
机译:本文制备了溅射金纳米颗粒的ZnO微盘,以探讨其等离子体激子/激子耦合效应。在室温下,生长和溅射Au的ZnO样品的PL光谱中观察到明显的蓝移和增强的激子发射强度。对吸收光谱和随温度变化的PL光谱的研究已证明了光学现象背后的Burstein-Moss效应。这些结果揭示了金属局部表面等离子体激元与半导体激子之间的耦合动力学。

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