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Novel Techniques for Observing Structural Dynamics of Photoresponsive Liquid Crystals
Published on: May 29, 2018
Resolving Excited-State Dynamics of Two-Dimensional Layered (PEA)2SnI4 Polycrystalline Thin Films in Fabry-Pérot
Han Qi1, Yulin Sha1, Qinghua Zhou1
1Institute of Molecular Plus, Tianjin University, Tianjin 300072, P. R. China.
Abstract:
Exciton-photon hybrid states in cavities based on 2D hybrid organic-inorganic perovskites (2D-HOIPs) offer a promising route toward low-threshold lasing, yet the excited-state dynamics of these hybrid states remain largely unexplored, particularly in disordered polycrystalline films where dark states' (DS) negligible photon fraction may become spectroscopically active. Here, using sub-20 fs fs-TA spectroscopy, we reveal the transient signature and detuning-dependent decay pathways of hybrid states in Fabry-Pérot cavities employing (PEA)2SnI4 polycrystalline films. A short-lived upper polariton (UP) population is identified with decay rate scales with photon fraction. Crucially, a long-lived negative band was observed in negatively detuned cavities and identified as DS-like states by disentangling from optical artifacts. Our work provides direct evidence that DS-like states contribute to the long-lived TA response of cavities and clarifies the fs-TA signatures of hybrid states in (PEA)2SnI4 polycrystalline films, offering a new photophysical insight for engineering low-threshold lasers based on scalable 2D-HOIP films.
