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Hot Holes: In Situ Visualization of Localized Surface Plasmon Resonance‐Driven Hot Hole Flux (Adv. Sci. 20/2020)

机译:热孔:原位可视化局部等离子体共振驱动的热孔通量(ADV。SCI。20/2020)

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摘要

In article number 2001148, Moonsang Lee, Jeong Young Park, and co‐workers demonstrate that fast‐disappearing hot holes are directly visualized using photoconductive atomic force microscopy. Experimental and numerical analysis show that hot spots at the edge of plasmonic nanostructures of Au nanoprisms on p‐type GaN exhibit enhanced hot hole flux driven by surface plasmons.
机译:在2001148年,Moonsang Lee,Jeonsang Lee,Jeong Young Park和同事表明,使用光导原子力显微镜显微镜直接可视化快速消失的热孔。实验和数值分析表明,P型GaN上的Au纳米型纳米结构边缘处的热点表现出由表面等离子体驱动的增强的热孔通量。

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