activity
20162019
most citedGiant Enhancement of Intrinsic Spin Hall Conductivity in Tungsten via Substitutional Doping

94 citations · 209 across the 4 of their papers we have counts for

collaborators

9 papers

cond-mat.mtrl-sci2019

Giant Enhancement of Solid Solubility in Monolayer BNC Alloys by Selective Orbital Coupling

Shiqiao Du, Jianfeng Wang, Lei Kang +2

Solid solubility (SS) is one of the most important features of alloys, which is usually difficult to be largely tuned in the entire alloy concentrations by external approaches. Som…

cond-mat.mtrl-sci20191 cited

Prediction of Stoner-Type Magnetism in Low-Dimensional Electrides

Xuelei Sui, Jianfeng Wang, Wenhui Duan

Electrides are special ionic solids with excess cavity-trapped electrons serving as anions. Despite the extensive studies on electrides, the interplay between electrides and magnet…

cond-mat.mtrl-sci2019

Anomalous Dirac Plasmons in 1D Topological Electrides

Jianfeng Wang, Xuelei Sui, Shiwu Gao +3

Plasmon opens up the possibility to efficiently couple light and matter at sub-wavelength scales. In general, the plasmon frequency is dependent of carrier density. This dependency…

cond-mat.mtrl-sci2019

Realization of Lieb Lattice in Covalent-organic Frameworks with Tunable Topology and Magnetism

Bin Cui, Xingwen Zheng, Jianfeng Wang +3

Lieb lattice, a two-dimensional edge-depleted square lattice, has been predicted to host various exotic electronic properties due to its unusual band structure, i.e., Dirac cone in…

cond-mat.mes-hall2018

Pseudo Dirac Nodal Sphere: Unusual Electronic Structure and Material Realization

Jianfeng Wang, Yizhou Liu, Kyung-Hwan Jin +4

Topological semimetals (TSMs) in which conduction and valence bands cross at zero-dimensional (0D) Dirac nodal points (DNPs) or 1D Dirac nodal lines (DNLs), in 3D momentum space, h…

cond-mat.mtrl-sci201794 cited

Giant Enhancement of Intrinsic Spin Hall Conductivity in Tungsten via Substitutional Doping

Xuelei Sui, Chong Wang, Jinwoong Kim +4

A key challenge in manipulating the magnetization in heavy-metal/ferromagnetic bilayers via the spin-orbit torque is to identify materials that exhibit an efficient charge-to-spin…