激光阈值
激子
材料科学
光电子学
异质结
激光器
光子学
半导体
量子阱
光学
凝聚态物理
物理
波长
作者
Eunice Paik,Long Zhang,G. William Burg,Rahul Gogna,Emanuel Tutuc,Hui Deng
出处
期刊:RePEc: Research Papers in Economics - RePEc
日期:2019-11-25
被引量:78
标识
DOI:10.1038/s41586-019-1779-x
摘要
Abstract Two-dimensional semiconductors have emerged as a new class of materials for nanophotonics owing to their strong exciton–photon interaction1, 2 and their ability to be engineered and integrated into devices3. Here we take advantage of these properties to engineer an efficient lasing medium based on direct-bandgap interlayer excitons in rotationally aligned atomically thin heterostructures4. Lasing is measured from a transition-metal dichalcogenide heterobilayer (WSe2–MoSe2) integrated in a silicon nitride grating resonator. An abrupt increase in the spatial coherence of the emission is observed across the lasing threshold. The work establishes interlayer excitons in two-dimensional heterostructures as a gain medium with spatially coherent lasing emission and potential for heterogeneous integration. With electrically tunable exciton–photon interaction strengths5 and long-range dipolar interactions, these interlayer excitons are promising for application as low-power, ultrafast lasers and modulators and for the study of many-body quantum phenomena6.
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