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Single Mode ZnO Whispering-Gallery Submicron Cavity and Graphene Improved Lasing Performance

机译:单模ZnO耳语画廊亚微米腔和石墨烯的激光性能提高

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摘要

Single-mode ultraviolet (UV) laser of ZnO is still in challenge solar, although it has been paid great attention along the past decades. In this work, single-mode lasing resonance was realized in a submicron-sized ZnO rod based on serially varying the dimension of the whispering-gallery mode (WGM) cavities. The lasing performance, such as the lasing quality factor (Q) and the lasing intensity, was remarkably improved by facilely covering monolayer graphene on the ZnO submicron-rod. The mode structure evolution from multimodes to single-mode was investigated systematically based on the total internal-wall reflection of the ZnO microcavities. Graphene-induced optical field confinement and lasing emission enhancement were revealed, indicating an energy coupling between graphene SP and ZnO exciton emission. This result demonstrated the response of graphene in the UV wavelength region and extended its potential applications besides many previous reports on the multifunctional graphene/semiconductor hybrid materials and devices in advanced electronics and optoelectronics areas.
机译:ZnO的单模紫外线(UV)激光器仍在挑战太阳能,尽管在过去几十年中一直受到极大关注。在这项工作中,基于连续改变耳语画廊模式(WGM)腔的尺寸,在亚微米尺寸的ZnO棒中实现了单模激光共振。通过在ZnO亚微米棒上轻松覆盖单层石墨烯,可显着提高激光性能,例如激光品质因数(Q)和激光强度。基于ZnO微腔的全内壁反射,系统地研究了从多模到单模的模结构演变。揭示了石墨烯诱导的光场限制和激光发射增强,表明石墨烯SP和ZnO激子发射之间存在能量耦合。该结果证明了石墨烯在紫外波长范围内的响应,并扩展了其潜在的应用,除了先前有关先进电子和光电领域中多功能石墨烯/半导体混合材料和器件的许多报道。

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