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Theoretical advances in polariton chemistry and molecular cavity quantum electrodynamics
When molecules are coupled to an optical cavity, new light–matter hybrid states, so-called
polaritons, are formed due to quantum light–matter interactions. With the experimental …
polaritons, are formed due to quantum light–matter interactions. With the experimental …
The rise and current status of polaritonic photochemistry and photophysics
The interaction between molecular electronic transitions and electromagnetic fields can be
enlarged to the point where distinct hybrid light–matter states, polaritons, emerge. The …
enlarged to the point where distinct hybrid light–matter states, polaritons, emerge. The …
Colloidal metal‐halide perovskite nanoplatelets: thickness‐controlled synthesis, properties, and application in light‐emitting diodes
Colloidal metal‐halide perovskite nanocrystals (MHP NCs) are gaining significant attention
for a wide range of optoelectronics applications owing to their exciting properties, such as …
for a wide range of optoelectronics applications owing to their exciting properties, such as …
[หนังสือ][B] The Jaynes–Cummings model and its descendants: modern research directions
J Larson, T Mavrogordatos - 2021 - iopscience.iop.org
The Jaynes–Cummings Model (JCM) has recently been receiving increased attention as
one of the simplest, yet intricately nonlinear, models of quantum physics. Emphasising the …
one of the simplest, yet intricately nonlinear, models of quantum physics. Emphasising the …
Energy transfer driven brightening of MoS2 by ultrafast polariton relaxation in microcavity MoS2/hBN/WS2 heterostructures
Energy transfer is a ubiquitous phenomenon that delivers energy from a blue-shifted emitter
to a red-shifted absorber, facilitating wide photonic applications. Two-dimensional (2D) …
to a red-shifted absorber, facilitating wide photonic applications. Two-dimensional (2D) …
Expanded theory of H-and J-molecular aggregates: the effects of vibronic coupling and intermolecular charge transfer
The electronic excited states of molecular aggregates and their photophysical signatures
have long fascinated spectroscopists and theoreticians alike since the advent of Frenkel …
have long fascinated spectroscopists and theoreticians alike since the advent of Frenkel …
Thermal disorder prevents the suppression of ultra-fast photochemistry in the strong light-matter coupling regime
Strong coupling between molecules and confined light modes of optical cavities to form
polaritons can alter photochemistry, but the origin of this effect remains largely unknown …
polaritons can alter photochemistry, but the origin of this effect remains largely unknown …
Strong light–matter interactions: a new direction within chemistry
It is possible to modify the chemical and physical properties of molecules, not only through
chemical modifications but also by coupling molecules strongly to light. More intriguingly …
chemical modifications but also by coupling molecules strongly to light. More intriguingly …
Vibration-cavity polariton chemistry and dynamics
Molecular polaritons result from light-matter coupling between optical resonances and
molecular electronic or vibrational transitions. When the coupling is strong enough, new …
molecular electronic or vibrational transitions. When the coupling is strong enough, new …
Polaritonic chemistry with organic molecules
We present an overview of the general concepts of polaritonic chemistry with organic
molecules, ie, the manipulation of chemical structure that can be achieved through strong …
molecules, ie, the manipulation of chemical structure that can be achieved through strong …