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20162022
most citedFirst-principles investigation of elastic anomalies in niobium at high pressure and temperature

29 citations · 83 across the 4 of their papers we have counts for

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Showing cond-mat.mtrl-sciShow all

7 papers · 1 filter

cond-mat.mtrl-sci2021

Prediction of anomalous LA-TA splitting in electrides

Leilei Zhang, Hua Y. Geng, Q. Wu

Electrides are an emerging class of materials with excess electrons localized in interstices and acting as anionic interstitial quasi-atoms (ISQs). The spatial ion-electron separat…

cond-mat.mtrl-sci2020

Thermodynamic anomalies and three distinct liquid-liquid transitions in warm dense liquid hydrogen

Hua Y. Geng, Q. Wu, Miriam Marqués +1

The properties of hydrogen at high pressure have wide implications in astrophysics and high-pressure physics. Its phase change in the liquid is variously described as a metallizati…

cond-mat.mtrl-sci2020

Orbital localization error of density functional theory in shear properties of vanadium and niobium

Y. X. Wang, Hua Y. Geng, Q. Wu +1

It is believed that the density functional theory (DFT) describes most elements with s, p and d orbitals very well, except some materials that having strongly localized and correla…

cond-mat.mtrl-sci2018

Trivial topological phase of CaAgP and the topological nodal-line transition in CaAg(P1-xAsx)

N. Xu, Y. T. Qian, Q. S. Wu +14

By performing angle-resolved photoemission spectroscopy and first-principles calculations, we address the topological phase of CaAgP and investigate the topological phase transitio…

cond-mat.mtrl-sci201829 cited

First-principles investigation of elastic anomalies in niobium at high pressure and temperature

Yi X. Wang, Hua Y. Geng, Q. Wu +2

Niobium does not show any structure transition up to very high pressures. Nonetheless, by using density functional theory, we demonstrate in this work that it exhibits striking sof…

cond-mat.mtrl-sci201719 cited

Prediction of a Mobile Solid State in Dense Hydrogen under High Pressures

Hua Y. Geng, Q. Wu, Y. Sun

Solid rigidity and liquid-scale mobility are thought incompatible in elemental substances. One cannot have an elemental solid that is long-range positionally ordered wherein the at…