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8 papers · 1 filter
Double Dirac Point Semimetal in Two-Dimensional Material: Ta2Se3
Yandong Ma, Yu Jing, Thomas Heine
Here, we report by first-principles calculations one new stable 2D Dirac material, Ta2Se3 monolayer. For this system, stable layered bulk phase exists, and exfoliation should be po…
Wave propagation and homogenization in 2D and 3D lattices: a semi-analytical approach
A. A. Kutsenko, A. J. Nagy, X. Su +2
Wave motion in two- and three-dimensional periodic lattices of beam members supporting longitudinal and flexural waves is considered. An analytic method for solving the Bloch wave…
GeP3: A small indirect band gap 2D crystal with high carrier mobility and strong interlayer quantum confinement
Yu Jing, Yandong Ma, Yafei Li +1
We propose a two-dimensional crystal which possesses low indirect band gaps of 0.55 eV (monolayer) and 0.43 eV (bilayer) and high carrier mobilities similar to those of phosphorene…
Anisotropic Ripple Deformation in Phosphorene
Liangzhi Kou, Yandong Ma, Sean C. Smith +1
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the resulting ripple deformation may significantly influence electronic properties as…
Transition-metal dichalcogenide bilayers: switching materials for spin- and valleytronic applications
Nourdine Zibouche, Pier Philipsen, Agnieszka Kuc +1
We report that an external electric field applied normal to bilayers of transition-metal dichalcogenides TX2, M = Mo, W, X = S, Se, creates significant spin-orbit splittings and re…
From Layers to Nanotubes: Transition Metal Disulfides TMS2
Nourdine Zibouche, Agnieszka Kuc, Thomas Heine
MoS2 and WS2 layered transition-metal dichalcogenides are indirect band gap semiconductors in their bulk forms. Thinned to a monolayer, they undergo a transition and become direct…