激光阈值
光电子学
人口倒转
材料科学
钙钛矿(结构)
连续波
卤化物
光抽运
增益开关
激光器
激子
光学
化学
凝聚态物理
物理
无机化学
结晶学
波长
作者
Chuanjiang Qin,Atula S. D. Sandanayaka,Chenyang Zhao,Toshinori Matsushima,Dezhong Zhang,Takashi Fujihara,Chihaya Adachi
出处
期刊:Nature
[Nature Portfolio]
日期:2020-09-02
卷期号:585 (7823): 53-57
被引量:601
标识
DOI:10.1038/s41586-020-2621-1
摘要
Organic–inorganic lead halide quasi-two-dimensional (2D) perovskites are promising gain media for lasing applications because of their low cost, tunable colour, excellent stability and solution processability1–3. Optically pumped continuous-wave (CW) lasing is highly desired for practical applications in high-density integrated optoelectronics devices and constitutes a key step towards electrically pumped lasers4–6. However, CW lasing has not yet been realized at room temperature because of the ‘lasing death’ phenomenon (the abrupt termination of lasing under CW optical pumping), the cause of which remains unknown. Here we study lead halide-based quasi-2D perovskite films with different organic cations and observe that long-lived triplet excitons considerably impede population inversion during amplified spontaneous emission and optically pumped pulsed and CW lasing. Our results indicate that singlet–triplet exciton annihilation is a possible intrinsic mechanism causing lasing death. By using a distributed-feedback cavity with a high quality factor and applying triplet management strategies, we achieve stable green quasi-2D perovskite lasers under CW optical pumping in air at room temperature. We expect that our findings will pave the way to the realization of future current-injection perovskite lasers. Lead halide-based quasi-two-dimensional perovskite films with different organic cations are used to create stable green lasers under continuous-wave optical pumping in air at room temperature.
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