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Geometrically locked vortex lattices in semiconductor quantum fluids

机译:半导体量子流体中的几何锁定涡晶格

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Macroscopic quantum states can be easily created and manipulated within semiconductor microcavity chips using exciton-photon quasiparticles called polaritons. Besides being a new platform for technology, polaritons have proven to be ideal systems to study out-of-equilibrium condensates. Here we harness the photonic component of such a semiconductor quantum fluid to measure its coherent wavefunction on macroscopic scales. Polaritons originating from separated and independent incoherently pumped spots are shown to phase-lock only in high-quality microcavities, producing up to 100 vortices and antivortices that extend over tens of microns across the sample and remain locked for many minutes. The resultant regular vortex lattices are highly sensitive to the optically imposed geometry, with modulational instabilities present only in square and not triangular lattices. Such systems describe the optical equivalents to one- and two-dimensional spin systems with (anti)-ferromagnetic interactions controlled by their symmetry, which can be reconfigured on the fly, paving the way to widespread applications in the control of quantum fluidic circuits.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:使用称为极化子的激子光子准粒子,可以在半导体微腔芯片中轻松创建和操纵宏观量子态。除了作为技术的新平台之外,极化子还被证明是研究失衡冷凝物的理想系统。在这里,我们利用这种半导体量子流体的光子成分在宏观尺度上测量其相干波函数。已显示,源自分离且独立的非相干泵浦斑点的极化子仅在高质量微腔中具有相锁,可产生多达100个涡旋和反涡旋,这些涡旋和反涡旋在整个样品上延伸超过数十微米,并保持锁定状态数分钟。所得的规则涡旋晶格对光学施加的几何形状高度敏感,调制不稳定性仅存在于正方形晶格而不是三角形晶格中。这样的系统描述了具有由其对称性控制的(反)-铁磁相互作用的一维和二维自旋系统的光学等效物,该系统可以随时进行重新配置,从而为在量子流体回路控制中的广泛应用铺平了道路。 ? 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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