International audienceResonant interaction between excitonic transitions of molecules and localized electromagnetic field forms the hybrid polaritonic states. Tuneable microresonators may change the light-matter coupling strength and modulate them from weak to strong and ultra-strong coupling regimes. In this work we have realised strong coupling between the tuneable open-access cavity mode and the excitonic transitions in oligonucleotide-based molecular beacons with their terminus labelled with a pair of organic dye molecules demonstrating an efficient donor-to-acceptor Förster resonance energy transfer (FRET). We show that the predominant strong coupling of the cavity photon to the exciton transition in the donor dye molecule can lead to ...
Recently, exciton-photon strong coupling has been proposed as a means to control and enhance energy ...
Strong coupling between cavity photons and excited states of biologically produced recombinant fluor...
The interaction between molecular electronic transitions and electromagnetic fields can be enlarged ...
International audienceResonant interaction between excitonic transitions of molecules and localized ...
International audienceResonant interaction between excitonic transitions of molecules and localized ...
Resonant interaction between excitonic transitions of molecules and localized electromagnetic field ...
Strongly coupled optical microcavities containing different exciton states permit the creation of hy...
When photoactive molecules interact strongly with confined light modes, new hybrid light-matter stat...
When photoactive molecules interact strongly with confined light modes, new hybrid light–matter stat...
© 2014 Macmillan Publishers Limited. Strong exciton-photon coupling is the result of a reversible ex...
8siStrong light-matter coupling is emerging as a fascinating way to tune optical properties and modi...
The advent of efficient light-confining platforms marked the burgeoning of the field of Cavity Quant...
Optical control is achieved on the excited state energy transfer between spatially separated donor a...
Non-radiative energy transfer between spatially-separated molecules in a microcavity can occur when ...
Exciton-polaritons in semiconductors are quasi-particles which have recently shown the capability to...
Recently, exciton-photon strong coupling has been proposed as a means to control and enhance energy ...
Strong coupling between cavity photons and excited states of biologically produced recombinant fluor...
The interaction between molecular electronic transitions and electromagnetic fields can be enlarged ...
International audienceResonant interaction between excitonic transitions of molecules and localized ...
International audienceResonant interaction between excitonic transitions of molecules and localized ...
Resonant interaction between excitonic transitions of molecules and localized electromagnetic field ...
Strongly coupled optical microcavities containing different exciton states permit the creation of hy...
When photoactive molecules interact strongly with confined light modes, new hybrid light-matter stat...
When photoactive molecules interact strongly with confined light modes, new hybrid light–matter stat...
© 2014 Macmillan Publishers Limited. Strong exciton-photon coupling is the result of a reversible ex...
8siStrong light-matter coupling is emerging as a fascinating way to tune optical properties and modi...
The advent of efficient light-confining platforms marked the burgeoning of the field of Cavity Quant...
Optical control is achieved on the excited state energy transfer between spatially separated donor a...
Non-radiative energy transfer between spatially-separated molecules in a microcavity can occur when ...
Exciton-polaritons in semiconductors are quasi-particles which have recently shown the capability to...
Recently, exciton-photon strong coupling has been proposed as a means to control and enhance energy ...
Strong coupling between cavity photons and excited states of biologically produced recombinant fluor...
The interaction between molecular electronic transitions and electromagnetic fields can be enlarged ...