Experimental realization of two-dimensional Dirac nodal line fermions in monolayer Cu2Si
Baojie Feng(The University of Tokyo), Iwao Matsuda(The University of Tokyo), Paolo Moras(Institute of Structure of Matter), Taichi Okuda(Hiroshima University), K. Miyamoto(Hiroshima University), Peng Cheng(Institute of Physics), Cheng‐Cheng Liu(University of Science and Technology Beijing), K. Shimada(Hiroshima University), Kehui Wu(Jilin University), Osamu Sugino(The University of Tokyo), Polina M. Sheverdyaeva(Institute of Structure of Matter), Sanjoy Kr Mahatha(UGC DAE Consortium for Scientific Research), Yugui Yao(Beijing Institute of Technology), Botao Fu(Beijing Institute of Technology), Shusuke Kasamatsu(Yamagata University), Masashi Arita(Niigata University Medical and Dental Hospital), Lan Chen(Guangxi University), Shilong Wu(Hiroshima University), T.‐C. Chiang(University of Illinois Urbana-Champaign), Ya Feng(Chinese Academy of Sciences), Suguru Ito(The University of Tokyo)
Cited by 292
Related Papers
The pathogenicity of SARS-CoV-2 in hACE2 transgenic mice
|Nature|2020|1.2k
Giant Rashba-type spin splitting in bulk BiTeI
|Nature Materials|2011|902
Monolayer PtSe<sub>2</sub>, a New Semiconducting Transition-Metal-Dichalcogenide, Epitaxially Grown by Direct Selenization of Pt
|Nano Letters|2015|692
Direct observation of Tomonaga–Luttinger-liquid state in carbon nanotubes at low temperatures
|Nature|2003|510
Half-Heusler Compounds as a New Class of Three-Dimensional Topological Insulators
|Physical Review Letters|2010|363