A multipolar k·p theory for C3v crystals reveals band-dependent total-angular-momentum textures with vorticities |W_n|=1,2,5 that produce nonmonotonic current-induced spin polarization responses.
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8 Pith papers cite this work. Polarity classification is still indexing.
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UNVERDICTED 8representative citing papers
Electrochemical Sn intercalation produces bulk 1T-NbSe2 that exhibits insulating transport due to emergent electronic correlations, contrasting with metallic DFT predictions and enabling study of correlated states in this polytype.
Combining opposite rhombohedral stacking sequences in graphite produces topological flat bands at their domain interfaces near the K and K' points.
XB12 compounds formed from interconnected B12 icosahedra are predicted to be dynamically stable at ambient pressure and superconducting with Tc up to 42 K when the guest atom X is mono- or trivalent.
A two-body machine learning model based on Gaussian Approximation Potentials is trained to reproduce noncollinear DFT energies and fields for bcc Fe within 1 meV per spin under an adiabatic spin approximation.
Y3Cu2Sb3O14 shows no long-range order to 0.077 K, with NMR anomaly at 120 K attributed to partial VBS and muon data indicating QSL below 1 K driven by antiferromagnetic frustration.
VP2 is identified as a type-II nodal-line semimetal with 170% unsaturated linear magnetoresistance at 9 T and 40 K, plus Kondo effect and weak antilocalization from 2.24% V4+ magnetic impurities.
DFT+U+SOC calculations indicate strain-tunable easy-plane magnetic anisotropy in antiferromagnetic CaMn2Bi2, with preferred in-plane direction switchable by small strains.
citing papers explorer
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Beyond spin-1/2: Multipolar spin-orbit coupling in noncentrosymmetric crystals with time-reversal symmetry
A multipolar k·p theory for C3v crystals reveals band-dependent total-angular-momentum textures with vorticities |W_n|=1,2,5 that produce nonmonotonic current-induced spin polarization responses.
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Emergence of a correlated insulating state in bulk 1T-NbSe$_2$ via metal intercalation
Electrochemical Sn intercalation produces bulk 1T-NbSe2 that exhibits insulating transport due to emergent electronic correlations, contrasting with metallic DFT predictions and enabling study of correlated states in this polytype.
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Topological flat bands emerging at the inversion of stacking order in rhombohedral graphite
Combining opposite rhombohedral stacking sequences in graphite produces topological flat bands at their domain interfaces near the K and K' points.
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Ambient-Pressure Superconductivity from Boron Icosahedral Superatoms
XB12 compounds formed from interconnected B12 icosahedra are predicted to be dynamically stable at ambient pressure and superconducting with Tc up to 42 K when the guest atom X is mono- or trivalent.
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Smooth Overlap of Spin Orientations: Machine Learning Exchange Fields for Ab-initio Spin Dynamics
A two-body machine learning model based on Gaussian Approximation Potentials is trained to reproduce noncollinear DFT energies and fields for bcc Fe within 1 meV per spin under an adiabatic spin approximation.
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Novel Quantum Spin Liquid States in the $S = {\frac{1}{2}}$ Three-Dimensional Compound Y$_{3}$Cu$_{2}$Sb$_{3}$O$_{14}$
Y3Cu2Sb3O14 shows no long-range order to 0.077 K, with NMR anomaly at 120 K attributed to partial VBS and muon data indicating QSL below 1 K driven by antiferromagnetic frustration.
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Large magnetoresistance and weak-antilocalization in the nodal-line semimetal VP2
VP2 is identified as a type-II nodal-line semimetal with 170% unsaturated linear magnetoresistance at 9 T and 40 K, plus Kondo effect and weak antilocalization from 2.24% V4+ magnetic impurities.
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Magnetic Order and Strain in Hexagonal Manganese Pnictide CaMn$_2$Bi$_2$
DFT+U+SOC calculations indicate strain-tunable easy-plane magnetic anisotropy in antiferromagnetic CaMn2Bi2, with preferred in-plane direction switchable by small strains.