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On-Demand Couplingof Electrically Generated Excitonswith Surface Plasmons via Voltage-Controlled Emission Zone Position

机译:按需耦合电动激子通过电压控制的发射区位置控制表面等离激元

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摘要

The ability to confine and manipulate light below the diffraction limit is a major goal of future multifunctional optoelectronic/plasmonic systems. Here, we demonstrate the design and realization of a tunable and localized electrical source of excitons coupled to surface plasmons based on a polymer light-emitting field-effect transistor (LEFET). Gold nanorods that are integrated into the channel support localized surface plasmons and serve as nanoantennas for enhanced electroluminescence. By precise spatial control of the near-infrared emission zone in the LEFET via the applied voltages the near-field coupling between electrically generated excitons and the nanorods can be turned on or off as visualized by a change of electroluminescence intensity. Numerical calculations and spectroscopic measurements corroborate significant local electroluminescence enhancement due to the high local density of photonic states in the vicinity of the gold nanorods. Importantly, the integration of plasmonic nanostructures hardly influences the electrical performance of the LEFETs, thus, highlighting their mutual compatibility in novel activeplasmonic devices.
机译:在未来的多功能光电/等离激元系统中,将光限制和操纵在衍射极限以下的光的能力是其主要目标。在这里,我们演示了基于聚合物发光场效应晶体管(LEFET)的与表面等离激元耦合的激子的可调和局​​部电源的设计和实现。集成到通道中的金纳米棒支持局部表面等离子体激元,并用作增强电致发光的纳米天线。通过施加电压对LEFET中的近红外发射区进行精确的空间控制,可以通过电致发光强度的变化来打开或关闭电激发子和纳米棒之间的近场耦合。数值计算和光谱测量结果证实了由于金纳米棒附近光子态的高局部密度而导致的显着局部电致发光增强。重要的是,等离子纳米结构的集成几乎不会影响LEFET的电性能,因此,突出了它们在新型有源器件中的相互兼容性。等离子体设备。

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