Multiferrons are defined as elementary excitations with both electric and magnetic character that tilt polarization, generate magnetization via dynamical multiferroicity, and carry quadrupole and octupole moments, as computed for LiNbO3.
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9 Pith papers cite this work. Polarity classification is still indexing.
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UNVERDICTED 9roles
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Floquet driving with CPL creates an odd-parity altermagnetic HOTI in Cr₂CH₂ monolayer with preserved C₃-protected corner states over a range of driving strengths.
Pressure drives self-doping that increases CuO2-plane hole concentration while renormalizing hopping and superexchange, so Tc(P) reflects competition between enhanced pairing and motion along the Tc-delta_x dome and is highly sensitive to starting doping.
Ab initio DFT calculations predict sizable anomalous Hall conductivity in C-type antiferromagnetic CaCrO3 from Berry curvature hot spots at spin-orbit gapped nodal lines near the Fermi energy.
Symmetry and first-principles analysis of 2D buckled honeycomb phonons identifies nine topological phases but places real Si, Ge, P, As, Sb crystals in the trivial phase, with Monte Carlo showing why topological realizations are physically constrained.
Spin-orbit coupling enriches spin-phonon interactions in α-RuCl₃ to produce finite phonon Berry curvatures and a thermal Hall effect that qualitatively matches measured κ_xy field dependence.
Sn incorporation in MBA₂SnₓPb₁₋ₓI₄ distorts octahedra with only minor effect on structural chirality while substantially enhancing phonon chirality, yet without increasing temperature-gradient angular momentum due to mode compensation.
Molecular dynamics with ML force fields shows inorganic layers in MBA2PbI4 lose chirality faster than organic cations with rising temperature due to hydrogen bond breaking.
DFT study of triangular-lattice MCl2 monolayers finds VCl2 and MnCl2 antiferromagnetic while NiCl2 is ferromagnetic, attributed to Goodenough-Kanamori-Anderson rules via Wannier-function hopping analysis.
citing papers explorer
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Lattice excitations with finite polarization and magnetization
Multiferrons are defined as elementary excitations with both electric and magnetic character that tilt polarization, generate magnetization via dynamical multiferroicity, and carry quadrupole and octupole moments, as computed for LiNbO3.
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Floquet-Engineered Odd-Parity Altermagnetic Higher-Order Topology in a Two-Dimensional Antiferromagnet Cr$_2$CH$_2$
Floquet driving with CPL creates an odd-parity altermagnetic HOTI in Cr₂CH₂ monolayer with preserved C₃-protected corner states over a range of driving strengths.
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Hydrostatic Pressure-Induced Evolution of the Superconducting Transition Temperature of Bi-2212: Insights from First-Principles Calculations
Pressure drives self-doping that increases CuO2-plane hole concentration while renormalizing hopping and superexchange, so Tc(P) reflects competition between enhanced pairing and motion along the Tc-delta_x dome and is highly sensitive to starting doping.
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Ab initio prediction of anomalous Hall effect in antiferromagnetic CaCrO$_3$
Ab initio DFT calculations predict sizable anomalous Hall conductivity in C-type antiferromagnetic CaCrO3 from Berry curvature hot spots at spin-orbit gapped nodal lines near the Fermi energy.
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Topological phonon analysis of the 2D buckled honeycomb lattice: an application to real materials
Symmetry and first-principles analysis of 2D buckled honeycomb phonons identifies nine topological phases but places real Si, Ge, P, As, Sb crystals in the trivial phase, with Monte Carlo showing why topological realizations are physically constrained.
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Theory of Intrinsic Phonon Thermal Hall Effect in $\alpha$-RuCl$_3$
Spin-orbit coupling enriches spin-phonon interactions in α-RuCl₃ to produce finite phonon Berry curvatures and a thermal Hall effect that qualitatively matches measured κ_xy field dependence.
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Impact of Metal Cation on Chiral Properties of 2D Halide Perovskites
Sn incorporation in MBA₂SnₓPb₁₋ₓI₄ distorts octahedra with only minor effect on structural chirality while substantially enhancing phonon chirality, yet without increasing temperature-gradient angular momentum due to mode compensation.
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Temperature-Dependent Chirality in Halide Perovskites
Molecular dynamics with ML force fields shows inorganic layers in MBA2PbI4 lose chirality faster than organic cations with rising temperature due to hydrogen bond breaking.
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Goodenough-Kanamori-Anderson rules in 2D magnet: A chemical trend in MCl2 with M=V, Mn, and Ni
DFT study of triangular-lattice MCl2 monolayers finds VCl2 and MnCl2 antiferromagnetic while NiCl2 is ferromagnetic, attributed to Goodenough-Kanamori-Anderson rules via Wannier-function hopping analysis.