空中骑兵
物理
成核
凝聚态物理
拓扑缺陷
液晶
磁单极子
拓扑(电路)
领域(数学)
相(物质)
偏斜
理论物理学
磁场
作者
Qingtian Shi,Jing Zhang,Wentao Tang,Zhawure Asilehan,Kun Tian,Xinda Zheng,Fernando Vergara,Ruijie Wang,Jingyu Li,Rui Zhang,Jinghua Jiang,Chenhui Peng
摘要
Topological solitons hold great promise for revolutionizing information and energy technologies, yet their controlled creation remains a major challenge. Here, we demonstrate room-temperature nucleation of fractional, skyrmion loops-three-dimensional, half-integer topological defects-within a nematic liquid crystal microfluidic cell. A single beam of linearly polarized light rotates the surface alignment, accumulating elastic twist until a topologically trivial texture collapses into a robust skyrmion loop. The loop's cross section continuously morphs between half Néel skyrmions, antiskyrmions, and bimerons. Real-time polarized microscopy and Landau-de Gennes free energy based simulations reveal that the transition occurs via a 2π twist discontinuity and a sharp energy drop. The same protocol can be triggered by electric fields or local heating, and spawns a pair of ±1 topological monopoles that migrate along the loop to minimize the free energy. Our findings establish nematic liquid crystals as an optically rewritable, low-energy platform for generating arbitrary three-dimensional topological textures, offering immediate avenues for reconfigurable photonics and topological metamaterials.
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