论文标题
拓扑驱动的rabi振动干扰位错
Topologically driven Rabi-oscillating interference dislocation
论文作者
论文摘要
量子涡旋是经典涡流的量化版本。它们的中心是相位奇异性或涡流核心,整个颗粒的流动围绕,在超氟,冷凝水和光场中典型的循环。但是,仍在进行相干耦合系统中相奇异点的运动。我们从理论上分析了在光与物质之间强耦合方面的干扰位错的传播,具有强大的质量不平衡,对应于微腔抗激元 - 果棒状的情况。为此,我们利用了涡流和紧密聚焦的高斯梁的组合,这些束由谐振脉冲泵送引入。我们表明,由于极性子与移动的rabi-soscillate涡流的非抛物性分散,脱位源于自我干扰条纹。在北极星的庞加尔空间中分析了与北极星各州相关的伪造的奇异性形态。由于极化系统的正常模式之间的重叠损失,所得的光束具有轨道角动量,并具有衰减的振荡。
Quantum vortices are the quantized version of classical vortices. Their center is a phase singularity or vortex core around which the flow of particles as a whole circulates and is typical in superfluids, condensates and optical fields. However, the exploration of the motion of the phase singularities in coherently-coupled systems is still underway. We theoretically analyze the propagation of an interference dislocation in the regime of strong coupling between light and matter, with strong mass imbalance, corresponding to the case of microcavity exciton-polaritons. To this end, we utilize combinations of vortex and tightly focused Gaussian beams, which are introduced through resonant pulsed pumping. We show that a dislocation originates from self-interference fringes, due to the non-parabolic dispersion of polaritons combined with moving Rabi-oscillating vortices. The morphology of singularities is analyzed in the Poincaré space for the pseudospin associated to the polariton states. The resulting beam carries orbital angular momentum with decaying oscillations due to the loss of overlap between the normal modes of the polariton system.