Coupled trapping and de-trapping dynamics govern spectral evolution in multi-center luminescent systems
Xinquan Zhou, David Van der Heggen, Philippe F. Smet, Maxime Delaey, Dirk Poelman, Lixin Ning (+1 more)
Abstract
In luminescent materials, excitation-time-dependent spectral evolution in connection with nonequilibrium carrier dynamics often remain poorly understood. Here we show that coupled trapping and de-trapping processes govern this behavior in a multi-center luminescent system for the case of Sb3+ doped CsCdCl3, featuring hexagonal and cubic phases. Especially in hexagonal CsCdCl3:Sb3+, multiple emission centers and trap states form competing carrier transfer pathways under steady excitation, leading to a time-dependent redistribution of excitation energy. Trapping introduces spectrally selective absorption overlapping the green Sb3+ emission, resulting in trap-assisted reabsorption, while optically stimulated de-trapping preferentially feeds the lower energy Cd-Cl orange-near-infrared emission. The competition among trapping, trap-assisted reabsorption, and de-trapping establishes a dynamic steady state that continuously reshapes the emission spectrum. These results identify coupled trapping and de-trapping dynamics as the microscopic origin of excitation-time-driven spectral evolution in multi-emitter systems. In luminescent materials, excitation-time-dependent spectral evolution mechanism is often poorly understood. Here, the authors demonstrate coupled trapping and de-trapping processes govern spectral evolution in CsCdCl3:Sb3+ multi-emitter systems.
Identifiers
Radar topics