In this paper we image the highly confined long range plasmons of a nanoscale metal stripe waveguide using quantum emitters. Plasmons were excited using a highly focused 633 nm laser beam and a specially designed grating structure to provide stronger incoupling to the desired mode. A homogeneous thin layer of quantum dots was used to image the near field intensity of the propagating plasmons on the waveguide. We observed that the photoluminescence is quenched when the QD to metal surface distance is less than 10 nm. The optimised spacer layer thickness for the stripe waveguides was found to be around 20 nm. Authors believe that the findings of this paper prove beneficial for the development of plasmonic devices utilising stripe waveguides
Plasmonic transmission lines have great potential to serve as direct interconnects between nanoscal...
Colloidal quantum dots are robust, efficient, and tunable emitters now used in lighting, displays, a...
This thesis describes experiments with surface plasmons: light confined to metal-dielectric interfac...
In this paper we image the highly confined long range plasmons of a nanoscale metal stripe waveguide...
In this paper we image the highly confined long range plasmons of a nanoscale metal stripe waveguide...
In this paper we image the highly confined long range plasmons of a nanoscale metal stripe waveguide...
Abstract In this paper we image the highly confined long range plasmons of a nanoscale metal stripe ...
In this paper we image the highly confined long range plasmons of a nanoscale metal stripe waveguide...
In this paper we excite bound long range stripe plasmon modes with a highly focused laser beam. We d...
In this paper we excite bound long range stripe plasmon modes with a highly focused laser beam. We d...
Quantum dot-plasmonwaveguide systems are of interest for the active control of plasmon propagation, ...
Plasmonics is a recently emerged technology that enables the compression of electromagnetic waves in...
Plasmonics is a recently emerged technology that enables the compression of electromagnetic waves in...
Plasmonic transmission lines have great potential to serve as direct interconnects between nanoscale...
Spontaneous emission (SE) of a Quantum emitter depends mainly on the transmission strength between t...
Plasmonic transmission lines have great potential to serve as direct interconnects between nanoscal...
Colloidal quantum dots are robust, efficient, and tunable emitters now used in lighting, displays, a...
This thesis describes experiments with surface plasmons: light confined to metal-dielectric interfac...
In this paper we image the highly confined long range plasmons of a nanoscale metal stripe waveguide...
In this paper we image the highly confined long range plasmons of a nanoscale metal stripe waveguide...
In this paper we image the highly confined long range plasmons of a nanoscale metal stripe waveguide...
Abstract In this paper we image the highly confined long range plasmons of a nanoscale metal stripe ...
In this paper we image the highly confined long range plasmons of a nanoscale metal stripe waveguide...
In this paper we excite bound long range stripe plasmon modes with a highly focused laser beam. We d...
In this paper we excite bound long range stripe plasmon modes with a highly focused laser beam. We d...
Quantum dot-plasmonwaveguide systems are of interest for the active control of plasmon propagation, ...
Plasmonics is a recently emerged technology that enables the compression of electromagnetic waves in...
Plasmonics is a recently emerged technology that enables the compression of electromagnetic waves in...
Plasmonic transmission lines have great potential to serve as direct interconnects between nanoscale...
Spontaneous emission (SE) of a Quantum emitter depends mainly on the transmission strength between t...
Plasmonic transmission lines have great potential to serve as direct interconnects between nanoscal...
Colloidal quantum dots are robust, efficient, and tunable emitters now used in lighting, displays, a...
This thesis describes experiments with surface plasmons: light confined to metal-dielectric interfac...