Observation of nodal-line semimetal with ultracold fermions in an optical lattice

被引:1
|
作者
Bo Song
Chengdong He
Sen Niu
Long Zhang
Zejian Ren
Xiong-Jun Liu
Gyu-Boong Jo
机构
[1] The Hong Kong University of Science and Technology,Department of Physics
[2] Peking University,International Center for Quantum Materials, School of Physics
[3] Collaborative Innovation Center of Quantum Matter,CAS Center for Excellence in Topological Quantum Computation
[4] University of Chinese Academy of Sciences,Institute for Quantum Science and Engineering and Department of Physics
[5] Southern University of Science and Technology,undefined
来源
Nature Physics | 2019年 / 15卷
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摘要
The observation of topological phases beyond two dimensions, as widely reported in solid-state systems1,2, has been an open challenge for ultracold atoms. Although many theoretical schemes have been proposed, the experimental complexity in realizing and characterizing the three-dimensional (3D) band structure has acted as a barrier against experiments achieving this. Here, we realize a 3D spin–orbit coupled nodal-line semimetal in an optical Raman lattice filled with ultracold fermions, and observe the bulk line nodes in the band structure. The realized topological semimetal exhibits an emergent magnetic group symmetry. This allows detection of the nodal lines by effectively reconstructing the 3D topological band from a series of measurements of integrated spin textures, which precisely render spin textures on the parameter-tuned magnetic-group-symmetric planes. The detection technique can be applied generally to explore 3D topological states of similar symmetries. Furthermore, we observe the band inversion lines from topological quench dynamics, which are bulk counterparts of Fermi arc states and connect the Dirac points, reconfirming the realized topological band. Our results demonstrate an approach to effectively observe 3D band topology, and open the way to probe exotic topological physics for ultracold atoms in high dimensions.
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页码:911 / 916
页数:5
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