CaAgBi is predicted to be a Dirac-Weyl semimetal with 18 pairs of dual-type Weyl points whose positions and annihilation can be tuned by alloy engineering and external strain.
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9 Pith papers cite this work. Polarity classification is still indexing.
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KBa3Ca4Cu3V7O28 realizes a gapless 3D bipartite quantum spin liquid stabilized by trimer-amplified anisotropy from weak microscopic exchange.
ARPES on NiPS3 reveals a many-body feature at the valence band edge matching mixed d7 and d8L multiplet states from NiS6 cluster diagonalization, indicating local Ni-S physics beyond mean-field theory.
Derives perturbative expressions for layer-resolved in-plane displacements from continuum elasticity in moiré heterobilayers and predicts a buckling instability near alignment driven by compressive strain.
Frustrated out-of-plane DMI favors atomic-scale 3q magnetic textures in Fe3GeXTe monolayers at moderate DMI scaling factors, evolving toward nanoskyrmion-like states at higher amplitudes.
Raman measurements and ab initio calculations show anisotropic electron-phonon coupling and chiral phonons in room-temperature ferromagnetic Fe5GeTe2.
Exciton condensation stabilizes sliding ferroelectricity in WTe2 bilayer through band renormalizations induced by electron-hole interactions.
DFT+DMFT with a multi-orbital iterative perturbation theory solver shows that low-energy spectra and transport of SrVO3 are governed by a single quasiparticle weight Z, yielding reasonable experimental agreement insensitive to specific (U,J) parameters.
Hg3AsSe4I monolayer is proposed as an efficient 2D photocatalyst for water-splitting due to suitable band alignment, stable vertical polarization, high carrier mobility, and Rashba SOC enabling carrier separation.
citing papers explorer
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Tunable Dual-Type Weyl Points in Dirac-Weyl Semimetal CaAgBi
CaAgBi is predicted to be a Dirac-Weyl semimetal with 18 pairs of dual-type Weyl points whose positions and annihilation can be tuned by alloy engineering and external strain.
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Quantum spin liquid on a 3D bipartite lattice of spin trimers stabilized by enhanced effective anisotropy
KBa3Ca4Cu3V7O28 realizes a gapless 3D bipartite quantum spin liquid stabilized by trimer-amplified anisotropy from weak microscopic exchange.
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Evidence for Many-Body States in NiPS$_3$ Revealed by Angle-Resolved Photoelectron Spectroscopy
ARPES on NiPS3 reveals a many-body feature at the valence band edge matching mixed d7 and d8L multiplet states from NiS6 cluster diagonalization, indicating local Ni-S physics beyond mean-field theory.
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Lattice Relaxation in Moir\'e Heterobilayers
Derives perturbative expressions for layer-resolved in-plane displacements from continuum elasticity in moiré heterobilayers and predicts a buckling instability near alignment driven by compressive strain.
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Frustrated out-of-plane Dzyaloshinskii-Moriya interaction and the onset of atomic-scale 3$q$ magnetic textures in 2D Fe$_{3}$GeXTe (X = Te, Se, S) monolayers
Frustrated out-of-plane DMI favors atomic-scale 3q magnetic textures in Fe3GeXTe monolayers at moderate DMI scaling factors, evolving toward nanoskyrmion-like states at higher amplitudes.
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Anisotropic electron-phonon coupling and chiral phonons in van der Waals room temperature ferromagnet Fe$_{5}$GeTe$_{2}$
Raman measurements and ab initio calculations show anisotropic electron-phonon coupling and chiral phonons in room-temperature ferromagnetic Fe5GeTe2.
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Stabilization of sliding ferroelectricity through exciton condensation
Exciton condensation stabilizes sliding ferroelectricity in WTe2 bilayer through band renormalizations induced by electron-hole interactions.
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Quantitative DFT+DMFT description of spectra and transport in the moderately correlated metal SrVO$_3$
DFT+DMFT with a multi-orbital iterative perturbation theory solver shows that low-energy spectra and transport of SrVO3 are governed by a single quasiparticle weight Z, yielding reasonable experimental agreement insensitive to specific (U,J) parameters.
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Two-dimensional vertically polarized Hg3AsSe4I monolayer for efficient photocatalytic water-splitting: promoting carrier separation by intrinsic electric field and Rashba effect
Hg3AsSe4I monolayer is proposed as an efficient 2D photocatalyst for water-splitting due to suitable band alignment, stable vertical polarization, high carrier mobility, and Rashba SOC enabling carrier separation.