Nanoscale imaging and spontaneous emission control with a single nano-positioned quantum dot

Нанорезолюционное формирование изображений и управление спонтанным излучением с помощью одиночной квантовой точки, позиционированной с нанометровой точностью
Chad Ropp, Zachary Cummins, Sanghee Nah, John T. Fourkas, Benjamin Shapiro, Edo Waks
2013-02-05

local density of optical statesplasmonic nanostructuressingle quantum dotspontaneous emission controlsurface plasmon polaritons
Plasmonic nanostructures confine light on the nanoscale, enabling ultra-compact optical devices that exhibit strong light–matter interactions. Quantum dots are ideal for probing plasmonic devices because of their nanoscopic size and desirable emission properties. However, probing with single quantum dots has remained challenging because their small size also makes them difficult to manipulate. Here we demonstrate the use of quantum dots as on-demand probes for imaging plasmonic nanostructures, as well as for realizing spontaneous emission control at the single emitter level with nanoscale spatial accuracy. A single quantum dot is positioned with microfluidic flow control to probe the local density of optical states of a silver nanowire, achieving 12 nm imaging accuracy. The high spatial accuracy of this scanning technique enables a new method for spontaneous emission control where interference of counter-propagating surface plasmon polaritons results in spatial oscillations of the quantum dot lifetime as it is positioned along the wire axis. The emission properties of quantum dots make them ideal for probing plasmonic nanostructures, but their small size makes them difficult to manipulate. Ropp et al.use a microfluidic system to accurately place single quantum dots around silver nanowires to probe the local density of optical states.
1
Interference between counter-propagating surface plasmon polaritons produces spatial oscillations in the quantum dot lifetime along the nanowire axis.
2
Microfluidic flow control positions a single quantum dot near a silver nanowire with 12 nm imaging accuracy.
3
Single quantum dots are used as on-demand nanoscale probes for imaging plasmonic nanostructures and controlling spontaneous emission.
4
The approach demonstrates spontaneous emission control at the single-emitter level with nanoscale spatial accuracy.
5
The technique probes the local density of optical states of the silver nanowire with nanoscale spatial precision.

a single quantum dot positioned around a silver nanowire

nanoscale imaging of the local density of optical states and spatial control of spontaneous emission through quantum-dot lifetime modulation

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2013-02-05
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Authors
Chad Ropp
Zachary Cummins
Sanghee Nah
John T. Fourkas
Benjamin Shapiro
Edo Waks
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