activity
20172022
most citedNonsymmorphic-symmetry-protected hourglass Dirac loop, nodal line, and Dirac point in bulk and monolayer SiTe ( Ta, Nb)

166 citations · 367 across the 9 of their papers we have counts for

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Showing cond-mat.mtrl-sciShow all

12 papers · 1 filter

cond-mat.mtrl-sci20221 cited

Two-dimensional hourglass Weyl nodal loop in monolayer Pb(ClO) and Sr(ClO)

Xin-Yue Kang, Chunmei Zhang, Mingxing Chen +1

The hourglass fermions in solid-state materials have been attracting significant interest recently. However, realistic two-dimensional (2D) materials with hourglass-shaped band str…

cond-mat.mtrl-sci2021

Chiral phonons in a square lattice

Qianqian Wang, Si Li, Jiaojiao Zhu +5

Chiral phonons were initially proposed and further verified experimentally in two-dimensional (2D) hexagonal crystal lattices. Many intriguing features brought about by chiral phon…

cond-mat.mtrl-sci2021

Correlation-driven topological and valley states in monolayer VSiP

Si Li, Qianqian Wang, Chunmei Zhang +2

Electronic correlations could have significant impact on the material properties. They are typically pronounced for localized orbitals and enhanced in low-dimensional systems, so t…

cond-mat.mtrl-sci2020

Valley-dependent properties of monolayer MoSiN, WSiN and MoSiAs

Si Li, Weikang Wu, Xiaolong Feng +4

In a recent work, new two-dimensional materials, the monolayer MoSiN and WSiN, have been successfully synthesized in experiment, and several other monolayer…

cond-mat.mtrl-sci2020

Tunable anomalous Hall transport in bulk and two-dimensional 1-CrTe: A first-principles study

Si Li, Shan-Shan Wang, Bo Tai +4

Layered materials with robust magnetic ordering have been attracting significant research interest. In recent experiments, a new layered material 1-CrTe has been synthesiz…

cond-mat.mtrl-sci202013 cited

Nonsymmorphic nodal-line metals in the two-dimensional rare earth monochalcogenides MX (M = Sc, Y; X = S, Se, Te)

Hao Guo, Jianzhou Zhao, Cong Chen +4

We predict a new family of two-dimensional (2D) rare earth monochalcogenide materials MX (M = Sc, Y; X = S, Se, Te). Based on first-principles calculations, we confirm their stabil…