Pseudorandom lasing emission from self-patterned thin films of CsPbBr3

被引:0
作者
Ruditskiy, Aleksey [1 ,2 ]
Dass, Chandriker K. [1 ]
Trout, Amanda H. [3 ]
Stevenson, Peter R. [1 ]
Bedford, Robert G. [1 ]
McComb, David W. [3 ]
Durstock, Michael F. [1 ]
Kennedy, W. Joshua [1 ]
机构
[1] Air Force Res Lab, Mat & Mfg Directorate, Dayton, OH 45433 USA
[2] UES Inc, Beavercreek, OH USA
[3] Ohio State Univ, CEMAS, Columbus, OH 43212 USA
关键词
HALIDE PEROVSKITES; TRIONS; GROWTH;
D O I
10.1063/5.0202889
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Metal halide perovskites have garnered considerable interest for their potential uses in high-efficiency photonics, particularly in the construction of on-chip lasers. Despite extensive efforts to understand the mechanisms underlying perovskite-based lasing, no clear consensus has emerged. Moreover, the fabrication of practical lasing emitters requires the challenging integration of a low-defect active material into a device architecture with minimized complexity. In this study, we demonstrate a simple, multimode lasing emitter composed of a millimeter-scale single-crystalline thin film of CsPbBr3. Dislocations, created during vapor-based film deposition, function as lasing cavity walls and form close-packed sets of resonators with random sizes at two orthogonal orientations within the thin film. Collecting ensemble temperature and power-dependent lasing characteristics of multiple, independent lasing modes in a single sample enables a statistical analysis of the underlying lasing mechanism. Our results reveal that the power-dependent red-shift in the stimulated emission envelope is caused by coupling between the radiatively recombining excitons and the collective oscillations of a photoexcited electron-hole plasma within the perovskite.
引用
收藏
页数:9
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