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纳米级荧光共振能量转移发光二极管中宽带银电致发光的光谱聚焦

Spectral focusing of broadband silver electroluminescence in nanoscopic FRET-LEDs.

作者信息

Puchert Robin P, Steiner Florian, Plechinger Gerd, Hofmann Felix J, Caspers Ines, Kirschner Johanna, Nagler Philipp, Chernikov Alexey, Schüller Christian, Korn Tobias, Vogelsang Jan, Bange Sebastian, Lupton John M

机构信息

Institut für Experimentelle und Angewandte Physik, Universität Regensburg, Universitätsstrasse 31, 93053 Regensburg, Germany.

出版信息

Nat Nanotechnol. 2017 Jul;12(7):637-641. doi: 10.1038/nnano.2017.48. Epub 2017 Apr 10.

Abstract

Few inventions have shaped the world like the incandescent bulb. Edison used thermal radiation from ohmically heated conductors, but some noble metals also exhibit 'cold' electroluminescence in percolation films, tunnel diodes, electromigrated nanoparticle aggregates, optical antennas or scanning tunnelling microscopy. The origin of this radiation, which is spectrally broad and depends on applied bias, is controversial given the low radiative yields of electronic transitions. Nanoparticle electroluminescence is particularly intriguing because it involves localized surface-plasmon resonances with large dipole moments. Such plasmons enable very efficient non-radiative fluorescence resonance energy transfer (FRET) coupling to proximal resonant dipole transitions. Here, we demonstrate nanoscopic FRET-light-emitting diodes which exploit the opposite process, energy transfer from silver nanoparticles to exfoliated monolayers of transition-metal dichalcogenides. In diffraction-limited hotspots showing pronounced photon bunching, broadband silver electroluminescence is focused into the narrow excitonic resonance of the atomically thin overlayer. Such devices may offer alternatives to conventional nano-light-emitting diodes in on-chip optical interconnects.

摘要

很少有发明能像白炽灯泡那样塑造世界。爱迪生利用欧姆加热导体产生的热辐射,但一些贵金属在渗流膜、隧道二极管、电迁移纳米颗粒聚集体、光学天线或扫描隧道显微镜中也会表现出“冷”电致发光。鉴于电子跃迁的辐射产率较低,这种光谱宽泛且依赖于外加偏压的辐射的起源存在争议。纳米颗粒电致发光尤其引人关注,因为它涉及具有大偶极矩的局域表面等离子体共振。这种等离子体能够实现非常高效的非辐射荧光共振能量转移(FRET),耦合到近端共振偶极跃迁。在这里,我们展示了纳米级FRET发光二极管,它利用了相反的过程,即从银纳米颗粒到过渡金属二硫属化物剥离单层的能量转移。在显示出明显光子聚束的衍射极限热点中,宽带银电致发光被聚焦到原子级薄覆盖层的窄激子共振中。这种器件可能为片上光学互连中的传统纳米发光二极管提供替代方案。

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