论文标题
在光量子流体的三角形涡流晶格中的抗磁磁性模型
Antiferromagnetic Ising model in a triangular vortex lattice of quantum fluids of light
论文作者
论文摘要
涡旋是在光束和Bose-Einstein冷凝物的相干磁场中以相位曲折形式出现的拓扑独特物体。耦合涡旋的结构化网络和人工晶格可以提供一个强大的平台来研究和模拟冷凝物系统组成部分之间的相互作用机制,例如抗铁磁相互作用,例如抗铁磁相互作用,通过用轨道角动量替换自旋角动量。在这里,我们意识到了基于激子 - 波利顿冷凝物的光量量子流体的宏观量子流体。我们印刷全光六角形晶格,导致三角形涡流晶格,每个电池都具有电荷涡流L = +-1。我们透露,成对的耦合冷凝水自发地排列了它们的轨道角动量反平行,这意味着一种人造轨道“抗铁磁性”形式。我们发现,三角形冷凝物晶格中的新兴涡流模式与相应的抗磁性ISING系统的低能溶液之间存在相关性。我们的研究提供了通往以几乎任意配置和受控耦合的自发有序涡流阵列的途径。
Vortices are topologically distinctive objects appearing as phase twists in coherent fields of optical beams and Bose-Einstein condensates. Structured networks and artificial lattices of coupled vortices could offer a powerful platform to study and simulate interaction mechanisms between constituents of condensed matter systems, such as antiferromagnetic interactions, by replacement of spin angular momentum with orbital angular momentum. Here, we realize such a platform using a macroscopic quantum fluid of light based on exciton-polariton condensates. We imprint all-optical hexagonal lattice that results into a triangular vortex lattice, with each cell having a vortex of charge l = +-1. We reveal that pairs of coupled condensates spontaneously arrange their orbital angular momentum antiparallel, implying a form of artificial orbital "antiferromagnetism". We discover that correlation exists between the emergent vortex patterns in triangular condensate lattices and the low-energy solutions of the corresponding antiferromagnetic Ising system. Our study offers a path toward spontaneously ordered vortex arrays with nearly arbitrary configurations and controlled couplings.