俘获
发光
化学物理
激发
材料科学
非平衡态热力学
光学镊子
时间演化
动力学(音乐)
分子物理学
吸收(声学)
稳态(化学)
再分配(选举)
光谱形状分析
物理
发射光谱
能量转移
光谱烧孔
存水弯(水管)
谱线
分子动力学
光电子学
原子物理学
自发辐射
吸收光谱法
兴奋剂
化学
纳米技术
光谱特性
热力学平衡
重组
作者
Xinquan Zhou,David Van der Heggen,Philippe F. Smet,Maxime Delaey,Dirk Poelman,Lixin Ning,Zhiguo Xia
标识
DOI:10.1038/s41467-026-76888-4
摘要
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.
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