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Pulse, polarization and topology shaping of polariton fluids

机译:Polariton流体的脉冲,极化和拓扑形状

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Here we present different approaches to ultrafast pulse and polarization shaping, based on a "quantum fluid" platform of polaritons. Indeed we exploit the normal modes of two dimensional polariton fluids made of strong coupled quantum well excitons and microcavity photons, by rooting different polarization and topological states into their sub-picosecond Rabi oscillations. Coherent control of two resonant excitation pulses allows us to prepare the desired state of the polariton, taking benefit from its four-component features given by the combination of the two normal modes with the two degrees of polarization. An ultrafast imaging based on the digital off-axis holography technique is implemented to study the polariton complex wavefunction with time and space resolution. We show in order coherent control of the polariton state on the Bloch sphere, an ultrafast polarization sweeping of the Poincare sphere, and the dynamical twist of full Poincare states such as the skyrmion on the sphere itself. Finally, we realize a new kind of ultrafast swirling vortices by adding the angular momentum degree of freedom to the two-pulse scheme. These oscillating topology states are characterized by one or more inner phase singularities tubes which spirals around the axis of propagation. The mechanism is devised in the splitting of the vortex into the upper and lower polaritons, resulting in an oscillatory exchange of energy and angular momentum and in the emitted time and space structured photonic packets.
机译:在这里,我们基于极性恒星的“量子流体”平台,呈现超快脉冲和偏振整形的不同方法。实际上,我们利用由强耦合量子孔激子和微腔光子制成的二维极性液体的正常模式,通过生根不同的偏振和拓扑状态进入其亚微微秒的Rabi振荡。两个共振激发脉冲的相干控制允许我们制备极谱的所需状态,从而受益于通过两种正常模式的组合给出的四分组分特征,其具有两度极化。基于数字偏离轴全息技术的超快成像用于研究具有时间和空间分辨率的Polariton复杂的波段。我们展示了在Bloch球体上的Polariton状态的顺序相干控制,庞加雷球体的超快偏振,以及全庞的状态的动态扭曲,如球体本身。最后,通过将角动量自由度添加到双脉冲方案来实现新的超快旋转涡旋。这些振荡拓扑状态的特征在于一个或多个内相奇点管,其围绕着传播轴螺旋。该机构设计成涡流的分裂进入上部和下极性子,导致能量和角动量的振荡交换以及发射的时间和空间结构化光子分组。

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