Excitons in organic semiconductors possessing a large oscillator strength demonstrate strong coupling with cavity modes at room temperature. A large Stokes shift in some organic semiconductors enriches and complicates the picture of the emission in strongly coupled systems of organic excitons and light. Here we demonstrate strong coupling of excitons in 4,4-Bis(N-carbazolyl)-1,1-biphenyl (CBP) and Tamm plasmons in the UV band, accompanied by a bright emission from the structure. Reflection measurements demonstrate the pronounced formation of the lower and upper polariton modes with Rabi splitting of the magnitude of 0.3 eV, and the emission peak experiences a substantial red shift with respect to the lower polariton mode. Both radiative and...
We provide an experimental investigation of a Purcell enhancement in a silver-organic periodic struc...
We report here a study of light–matter strong coupling involving three molecules with very different...
Conventional surface plasmons have a wave vector exceeding that of light in vacuum, and therefore ca...
Channeling of exciton polaritons in the plane of semiconductor microcavities can be achieved by the ...
In solid PVA matrix some thiophene- and selenophene-comprising heteroaromatic compounds reveal moder...
The persistent room-temperature phosphorescence (RTP) of purely organic materials in the solid state...
We provide a theoretical and experimental investigation of a Purcell enhancement in a Tamm-plasmon b...
Copyright © 2018 American Chemical Society. The strong coupling of a dense layer of molecular excito...
Photon emitters placed in an optical cavity experience an environment that changes how they are coup...
The authors are grateful to the Australian Research Council (ARC DP160100700 and DP200103036), Austr...
An enhanced delayed fluorescence is demonstrated experimentally in tetracene single crystals strongl...
Cataloged from PDF version of article.We report on the experimental and theoretical investigations o...
Arrays of metallic nanoparticles support collective plasmonic resonances known as surface lattice re...
Although persistent room-temperature phosphorescence (RTP) emission has been observed for a few pure...
This work has been supported by the State of Bavaria. A.K. and S.H. acknowledge the partial financia...
We provide an experimental investigation of a Purcell enhancement in a silver-organic periodic struc...
We report here a study of light–matter strong coupling involving three molecules with very different...
Conventional surface plasmons have a wave vector exceeding that of light in vacuum, and therefore ca...
Channeling of exciton polaritons in the plane of semiconductor microcavities can be achieved by the ...
In solid PVA matrix some thiophene- and selenophene-comprising heteroaromatic compounds reveal moder...
The persistent room-temperature phosphorescence (RTP) of purely organic materials in the solid state...
We provide a theoretical and experimental investigation of a Purcell enhancement in a Tamm-plasmon b...
Copyright © 2018 American Chemical Society. The strong coupling of a dense layer of molecular excito...
Photon emitters placed in an optical cavity experience an environment that changes how they are coup...
The authors are grateful to the Australian Research Council (ARC DP160100700 and DP200103036), Austr...
An enhanced delayed fluorescence is demonstrated experimentally in tetracene single crystals strongl...
Cataloged from PDF version of article.We report on the experimental and theoretical investigations o...
Arrays of metallic nanoparticles support collective plasmonic resonances known as surface lattice re...
Although persistent room-temperature phosphorescence (RTP) emission has been observed for a few pure...
This work has been supported by the State of Bavaria. A.K. and S.H. acknowledge the partial financia...
We provide an experimental investigation of a Purcell enhancement in a silver-organic periodic struc...
We report here a study of light–matter strong coupling involving three molecules with very different...
Conventional surface plasmons have a wave vector exceeding that of light in vacuum, and therefore ca...