Direct Generation of Radially Polarized Vector Vortex Beam with an Exciton-Polariton Laser

Jiaqi Hu, Seonghoon Kim, C. Schneider, S. Höfling, H. Deng
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引用次数: 6

Abstract

Vector vortex beams are a class of optical beams with singularities in their space-variant polarization. Vector vortex beam lasers have applications in many areas including imaging and communication, where vertical-cavity lasers emitting Gaussian beams have been most widely used so far. Generation of vector vortex beams from vertical-cavity lasers has required external control or modulation. Here, by utilizing a polarization-selective subwavelength grating as one of the reflectors in a vertical semiconductor microcavity, we design the spin textures of the polariton mode and demonstrate polariton lasing in a single-mode, radially polarized vector vortex beam. Polarization and phase distributions of the emission are characterized by polarization-resolved imaging and interferometry. This method of vector vortex laser beam generation allows low threshold power, stable single-mode operation, scalability, and on-chip integration, all of which are important for applications in imaging and communication.
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激子-极化子激光直接产生径向偏振矢量涡旋束
矢量涡旋光束是一类具有空间变极化奇点的光束。矢量涡旋光束激光器在成像和通信等领域有广泛的应用,其中垂直腔激光器发射高斯光束的应用最为广泛。从垂直腔激光器产生矢量涡旋光束需要外部控制或调制。在这里,我们利用偏振选择性亚波长光栅作为垂直半导体微腔中的反射器之一,设计了极化子模式的自旋织构,并演示了单模径向偏振矢量涡旋光束中的极化子激光。利用偏振分辨成像和干涉测量技术对发射的偏振和相位分布进行了表征。这种矢量涡旋激光束产生方法具有低阈值功率,稳定的单模操作,可扩展性和片上集成,所有这些对于成像和通信应用都很重要。
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