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石墨烯中拓扑声子的直接观测

Direct Observation of Topological Phonons in Graphene.

作者信息

Li Jiade, Li Jiangxu, Tang Jilin, Tao Zhiyu, Xue Siwei, Liu Jiaxi, Peng Hailin, Chen Xing-Qiu, Guo Jiandong, Zhu Xuetao

机构信息

Beijing National Laboratory for Condensed Matter Physics and Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.

School of Physical Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Phys Rev Lett. 2023 Sep 15;131(11):116602. doi: 10.1103/PhysRevLett.131.116602.

Abstract

Phonons, as the most fundamental emergent bosons in condensed matter systems, play an essential role in the thermal, mechanical, and electronic properties of crystalline materials. Recently, the concept of topology has been introduced to phonon systems, and the nontrivial topological states also exist in phonons due to the constraint by the crystal symmetry of the space group. Although the classification of various topological phonons has been enriched theoretically, experimental studies were limited to several three-dimensional (3D) single crystals with inelastic x-ray or neutron scatterings. The experimental evidence of topological phonons in two-dimensional (2D) materials is absent. Here, using high-resolution electron energy loss spectroscopy following our theoretical predictions, we directly map out the phonon spectra of the atomically thin graphene in the entire 2D Brillouin zone, and observe two nodal-ring phonons and four Dirac phonons. The closed loops of nodal-ring phonons and the conical structure of Dirac phonons in 2D momentum space are clearly revealed by our measurements, in nice agreement with our theoretical calculations. The ability of 3D mapping (2D momentum space and energy space) of phonon spectra opens up a new avenue to the systematic identification of the topological phononic states. Our work lays a solid foundation for potential applications of topological phonons in superconductivity, dynamic instability, and phonon diode.

摘要

声子作为凝聚态物质系统中最基本的涌现玻色子,在晶体材料的热学、力学和电学性质中起着至关重要的作用。最近,拓扑概念被引入到声子系统中,并且由于空间群晶体对称性的限制,非平凡拓扑态也存在于声子中。尽管各种拓扑声子的分类在理论上得到了丰富,但实验研究仅限于几种通过非弹性X射线或中子散射的三维(3D)单晶。二维(2D)材料中拓扑声子的实验证据仍然缺乏。在此,根据我们的理论预测,利用高分辨率电子能量损失谱,我们直接绘制出了整个二维布里渊区中原子级薄石墨烯的声子谱,并观测到两个节环声子和四个狄拉克声子。我们的测量清楚地揭示了二维动量空间中节环声子的闭环和狄拉克声子的锥形结构,与我们的理论计算结果非常吻合。声子谱的三维映射(二维动量空间和能量空间)能力为系统识别拓扑声子态开辟了一条新途径。我们的工作为拓扑声子在超导、动态不稳定性和声子二极管方面的潜在应用奠定了坚实的基础。

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