The advent of efficient light-confining platforms marked the burgeoning of the field of Cavity Quantum Electrodynamics (Cavity QED), which brought along the realization of exotic phenomena that emerges under extreme light-matter interaction regimes.On the other hand, in chemistry, the interaction between light and matter is at the core of invaluable spectroscopic techniques and a number of photo-induced chemical processes. From a theoretical standpoint, light-matter interaction in those scenarios can be treated perturbatively, such that molecules and light preserve their individual identity. This picture breaks down when we consider one photonic mode interacting with molecules such that the energy of this interaction surpasses their respect...
When photoactive molecules interact strongly with confined light modes in optical cavities, new hybr...
When photoactive molecules interact strongly with confined light modes as found in plasmonic structu...
In this article, we review strong light-matter coupling at the interface of materials science, quant...
The interaction between molecular electronic transitions and electromagnetic fields can be enlarged ...
The interaction between molecular electronic transitions and electromagnetic fields can be enlarged ...
The interaction between molecular electronic transitions and electromagnetic fields can be enlarged ...
The interaction between molecular electronic transitions and electromagnetic fields can be enlarged ...
When photoactive molecules interact strongly with confined light modes, new hybrid light-matter stat...
When photoactive molecules interact strongly with confined light modes in optical cavities, new hybr...
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...
When optical transitions in materials couple strongly to photon modes, light and matter degrees of f...
When photoactive molecules interact strongly with confined light modes, new hybrid light–matter stat...
The strong coupling regime between confined light and organic molecules turned out to be promising i...
The strong coupling regime between confined light and organic molecules turned out to be promising i...
When photoactive molecules interact strongly with confined light modes in optical cavities, new hybr...
When photoactive molecules interact strongly with confined light modes as found in plasmonic structu...
In this article, we review strong light-matter coupling at the interface of materials science, quant...
The interaction between molecular electronic transitions and electromagnetic fields can be enlarged ...
The interaction between molecular electronic transitions and electromagnetic fields can be enlarged ...
The interaction between molecular electronic transitions and electromagnetic fields can be enlarged ...
The interaction between molecular electronic transitions and electromagnetic fields can be enlarged ...
When photoactive molecules interact strongly with confined light modes, new hybrid light-matter stat...
When photoactive molecules interact strongly with confined light modes in optical cavities, new hybr...
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...
When optical transitions in materials couple strongly to photon modes, light and matter degrees of f...
When photoactive molecules interact strongly with confined light modes, new hybrid light–matter stat...
The strong coupling regime between confined light and organic molecules turned out to be promising i...
The strong coupling regime between confined light and organic molecules turned out to be promising i...
When photoactive molecules interact strongly with confined light modes in optical cavities, new hybr...
When photoactive molecules interact strongly with confined light modes as found in plasmonic structu...
In this article, we review strong light-matter coupling at the interface of materials science, quant...