Magnon spin angular momentum in bilayer CrSBr is renormalized by anisotropy and dipolar interactions and diverges at field-induced softening, creating a peak in the thermal spin Seebeck effect.
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5 Pith papers cite this work. Polarity classification is still indexing.
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2026 5representative citing papers
Light-matter coupling expansion of the magnon Hamiltonian yields the Fleury-Loudon Raman vertex, directly connecting Raman circular dichroism to magnon band Berry curvature.
Ferromagnetic ordering with out-of-plane anisotropy and 15-50 mT coercive fields is demonstrated in monolayer FeCl2 on Au(111) via atomically resolved spin-polarized STM hysteresis loops.
Demonstrates resonant magnon generation by acoustic waves in CrSBr bilayers enabled by strong strain dependence of interlayer exchange, with resonant frequency tunable by external magnetic field.
Bilayer ScI2 shows stacking-dependent interlayer exchange (FM in AA/BA, AFM in AB) with out-of-plane anisotropy and Curie temperatures of 360-375 K from DFT+U and Monte Carlo simulations.
citing papers explorer
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Spin-caloritronic signatures of soft magnons in bilayer CrSBr
Magnon spin angular momentum in bilayer CrSBr is renormalized by anisotropy and dipolar interactions and diverges at field-induced softening, creating a peak in the thermal spin Seebeck effect.
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Light-Matter-Coupling formalism for magnons: probing quantum geometry with light
Light-matter coupling expansion of the magnon Hamiltonian yields the Fleury-Loudon Raman vertex, directly connecting Raman circular dichroism to magnon band Berry curvature.
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Atomic scale demonstration of ferromagnetism in a single layer FeCl2 on Au(111)
Ferromagnetic ordering with out-of-plane anisotropy and 15-50 mT coercive fields is demonstrated in monolayer FeCl2 on Au(111) via atomically resolved spin-polarized STM hysteresis loops.
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Acoustically-driven magnons in CrSBr bilayers
Demonstrates resonant magnon generation by acoustic waves in CrSBr bilayers enabled by strong strain dependence of interlayer exchange, with resonant frequency tunable by external magnetic field.
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Stacking-dependent magnetic ordering in bilayer ScI$_{2}$
Bilayer ScI2 shows stacking-dependent interlayer exchange (FM in AA/BA, AFM in AB) with out-of-plane anisotropy and Curie temperatures of 360-375 K from DFT+U and Monte Carlo simulations.