The Role of Long-lived Excitons in the Dynamics of Strongly Coupled Molecular Polaritons
arXiv:2002.09747 · doi:10.1021/acsphotonics.0c00895
Abstract
The concept of modifying molecular dynamics in strongly coupled exciton-polariton systems is an emerging topic in photonics due to its potential to produce customized chemical systems with tailored photophysical properties. However, before such systems can be realized, it is essential to address the open questions concerning the nature and strength of electronic interactions between exciton-polaritons and localized excited states in chemical system as well as the proper way to measure such interactions. Here, we use transient optical spectroscopy to investigate dynamical interactions between exciton-polaritons, singlet excitons, and triplet excitons in a molecular singlet fission system that is strongly coupled to an optical microcavity. We identify some of the major limitations to modify molecular dynamics in the strong coupling regime. Simultaneous excitation of cavity polaritons and 'reservoir' states, defined as dark polaritons and dark excitons (e.g. triplets) from coupled molecules and excitons from uncoupled molecules, always occurs. In addition, slow conversion from reservoir states to cavity polaritons results in minimal changes to the overall population dynamics. Furthermore, we demonstrate how in addition to the usual population dynamics, transient optical measurements on microcavities reveal information pertaining to modification of the exciton-polariton transition energies due to changes in the population of molecular excited states and the exciton-photon coupling conditions. As a consequence of weak interactions between reservoir states and cavity polaritons, judicious design considerations are required to achieve modified chemical dynamics, necessitating the use of molecular systems with long excited-state lifetimes or strong coupling approaches that require a small number of molecules.
Cited by in corpus (14)
- Tuning the coherent propagation of organic exciton-polaritons through dark state delocalization
- Uncovering Temperature-Dependent Exciton-Polariton Relaxation Mechanisms in Perovskites
- Untargeted Effects in Organic Exciton-Polariton Transient Spectroscopy: A Cautionary Tale
- Femtosecond Photophysics of Molecular Polaritons
- When do molecular polaritons behave like optical filters?
- Ultrafast Thermal Modification of Strong Coupling in an Organic Microcavity
- Collective response in light-matter interactions: The interplay between strong coupling and local dynamics
- The role of dephasing for dark state coupling in a molecular Tavis-Cummings model
- Cooperative molecular structure in polaritonic and dark states
- Evidence for Polariton-Mediated Biexciton Transition in Single-Walled Carbon Nanotubes
- The Fate of the Upper Polariton: Breakdown of the Quasiparticle Picture in the Continuum
- Microscopic Theory of Polaron-Polariton Dispersion and Propagation
- Topological Frenkel Exciton-Polaritons in One-Dimensional Lattices of Strongly Coupled Cavities
- Direct readout of excited state lifetimes in chlorin chromophores under electronic strong coupling