钙钛矿(结构)
材料科学
激发态
卤化物
放大自发辐射
激发
纳米晶
化学物理
铯
自发辐射
受激发射
偶极子
超辐射
共发射极
光电子学
光发射
连贯性(哲学赌博策略)
凝聚态物理
光致发光
工作(物理)
声子
分子物理学
发射光谱
发光
航程(航空)
作者
Etsuki Kobiyama,Gabriele Rainò,Yuliia Berezovska,Chenglian Zhu,Simon C. Boehme,Maryna I. Bodnarchuk,Rainer F. Mahrt,Maksym V. Kovalenko,Thilo Stöferle
标识
DOI:10.1038/s41563-026-02544-3
摘要
Abstract Interactions between emitters can create cooperative effects that alter light emission. In superfluorescence (SF), excited dipoles couple coherently and radiate collectively, requiring low energetic disorder and strong temporal coherence. Conversely, amplified spontaneous emission results from stimulated amplification and does not require temporal coherence but, unlike SF, sufficient propagation for optical gain. Caesium lead halide perovskite nanocrystals exhibit both amplified spontaneous emission (in disordered films) and SF (in ordered assemblies); however, the connections between these regimes remain unclear. Here we demonstrate that temperature and excitation density can drive the transition between both regimes in a thin film of giant CsPbBr 3 perovskite nanocrystals. At temperatures below 45 K, excitonic SF was observed, whereas above a transition range between 45 K and 100 K, amplified spontaneous emission prevails but requires increased optical excitation and emitter density. Our results work out the different collective effects present in lead halide perovskites, providing fundamental insights into cooperative phenomena and guidance for the development of compact and bright (quantum) light sources.
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