节的
节点信号
节点分析
Dirac(视频压缩格式)
物理
生物
解剖
遗传学
粒子物理学
量子力学
基因
原肠化
胚胎干细胞
中微子
作者
Binbin Fu,Changjiang Yi,Tiantian Zhang,Marco Caputo,Junzhang Ma,Xin Gao,Baoliang Lv,Lingyuan Kong,Yaobo Huang,P. Richard,M. Shi,Vladimir N. Strocov,Chen Fang,Hongming Weng,Y. G. Shi,Tian Qian,Hong Ding
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2019-05-03
卷期号:5 (5)
被引量:157
标识
DOI:10.1126/sciadv.aau6459
摘要
Topological semimetals are characterized by symmetry-protected band crossings, which can be preserved in different dimensions in momentum space, forming zero-dimensional nodal points, one-dimensional nodal lines, or even two-dimensional nodal surfaces. Materials harboring nodal points and nodal lines have been experimentally verified, whereas experimental evidence of nodal surfaces is still lacking. Here, using angle-resolved photoemission spectroscopy (ARPES), we reveal the coexistence of Dirac nodal surfaces and nodal lines in the bulk electronic structures of ZrSiS. As compared with previous ARPES studies on ZrSiS, we obtained pure bulk states, which enable us to extract unambiguously intrinsic information of the bulk nodal surfaces and nodal lines. Our results show that the nodal lines are the only feature near the Fermi level and constitute the whole Fermi surfaces. We not only prove that the low-energy quasiparticles in ZrSiS are contributed entirely by Dirac fermions but also experimentally realize the nodal surface in topological semimetals.
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