Organic microcavities provide unique properties that are highly advantageous for designing microlasers, but lack in efficient ways to directly integrate electrodes able to drive high currents. The introduction of thin, patterned metal films, leading to the formation of local Tamm plasmon polariton states, has been recently demonstrated as a possible route to preserving coherence in the presence of significant optical loss. Here, periodic micron‐scale gratings of silver are embedded into a high‐quality organic microcavity, creating a crystal‐like photonic potential structure. Despite strong absorption of metallic layers, these structures readily lase upon optical excitation. In that case, the above threshold emission originates not from isol...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We report room-temperature lasing in two-dimensional diffractive lattices of silver and gold plasmon...
Organic microcavities comprising the host:guest emitter system Alq3:DCM offer an interesting playgro...
The subject of this thesis is the investigation of organic microcavities with implemented unstructur...
We discuss approaches to increase the light outcoupling efficiency in organic microcavity (MC) laser...
Photonic band structure engineering has developed into an important technique for controlling the em...
Strong light-matter interaction leads to the appearance of new states, i.e. exciton-polaritons, with...
Photonic band structure engineering has developed into an important technique for controlling the em...
A periodic metallic OLED microvaity structure is shown to constitute a 1D photonic crystal, with the...
Metallic nanostructures provide a toolkit for the generation of coherent light below the diffraction...
Lasing in organic media with very low gain has been pursued for a long time in optoelectronics. Here...
We employed mechanical patterning methods, including soft hot embossing and nanoimprinting lithograp...
We study the resonant modes of nanoscale disk resonators sustaining metal-insulator-metal (MIM) plas...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We report room-temperature lasing in two-dimensional diffractive lattices of silver and gold plasmon...
Organic microcavities comprising the host:guest emitter system Alq3:DCM offer an interesting playgro...
The subject of this thesis is the investigation of organic microcavities with implemented unstructur...
We discuss approaches to increase the light outcoupling efficiency in organic microcavity (MC) laser...
Photonic band structure engineering has developed into an important technique for controlling the em...
Strong light-matter interaction leads to the appearance of new states, i.e. exciton-polaritons, with...
Photonic band structure engineering has developed into an important technique for controlling the em...
A periodic metallic OLED microvaity structure is shown to constitute a 1D photonic crystal, with the...
Metallic nanostructures provide a toolkit for the generation of coherent light below the diffraction...
Lasing in organic media with very low gain has been pursued for a long time in optoelectronics. Here...
We employed mechanical patterning methods, including soft hot embossing and nanoimprinting lithograp...
We study the resonant modes of nanoscale disk resonators sustaining metal-insulator-metal (MIM) plas...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We report room-temperature lasing in two-dimensional diffractive lattices of silver and gold plasmon...