Sublattice-selective interlayer hybridizations in twisted bipartite lattice heterobilayers generate tunable zero-energy flat bands possessing finite Berry curvature and Chern-insulator-scale quantum metric.
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Extends Dietl-Spalek BMP framework with higher-order fluctuations and variational orbital optimization to predict stable ferromagnetically ordered BMPs in GdN up to T* = 155-160 K.
A semi-analytical reaction-diffusion model predicts halo growth in pre-patterned Ag-Cu thin films follows power-law regimes of 1/2 or 2/7 depending on growth dimensionality, with experiments matching the 2/7 regime driven by grain boundary diffusion.
Magnetic soft robots with spatially distributed magnetization profiles enable directional liquid cargo release aligned to external fields while preserving locomotion and shape morphing via decoupled control of field direction and strength.
Epitaxial L2_1-ordered Co2MnSi waveguides exhibit intrinsic cubic magnetocrystalline anisotropy that suppresses first-order nonlinear instabilities over several GHz at zero bias and stabilizes low-bias Damon-Eshbach operation.
Cryogenic dual-layer graphene phase modulators on SiN waveguides achieve insertion losses below 0.3 dB, modulation lengths under 50 μm, and GHz bandwidths via geometry and material optimization.
Nanostructured La0.6Sr0.4CoO3 made by confinement synthesis exhibits enhanced magnetocaloric parameters linked to particle size and de-agglomeration, positioning it as a candidate for magnetic refrigeration.
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Quantum Geometry of Moir\'e Flat Bands Beyond the Valley Paradigm
Sublattice-selective interlayer hybridizations in twisted bipartite lattice heterobilayers generate tunable zero-energy flat bands possessing finite Berry curvature and Chern-insulator-scale quantum metric.
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Stability and thermodynamic properties of bound magnetic polarons in ferromagnetic semiconductors: Beyond the Gaussian approximation
Extends Dietl-Spalek BMP framework with higher-order fluctuations and variational orbital optimization to predict stable ferromagnetically ordered BMPs in GdN up to T* = 155-160 K.
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Reaction-Diffusion Driven Patterns in Immiscible Alloy Thin Films
A semi-analytical reaction-diffusion model predicts halo growth in pre-patterned Ag-Cu thin films follows power-law regimes of 1/2 or 2/7 depending on growth dimensionality, with experiments matching the 2/7 regime driven by grain boundary diffusion.
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Programmable magnetic soft robots with controlled locomotion and directional liquid cargo release
Magnetic soft robots with spatially distributed magnetization profiles enable directional liquid cargo release aligned to external fields while preserving locomotion and shape morphing via decoupled control of field direction and strength.
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Epitaxial $\mathrm{Co_2MnSi}$ with intrinsic magnetocrystalline anisotropy as a route to bias-field-free nonlinear half-metal magnonics at the nanoscale
Epitaxial L2_1-ordered Co2MnSi waveguides exhibit intrinsic cubic magnetocrystalline anisotropy that suppresses first-order nonlinear instabilities over several GHz at zero bias and stabilizes low-bias Damon-Eshbach operation.
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Cryogenic Graphene-Based Phase Modulators for Quantum Information Processing
Cryogenic dual-layer graphene phase modulators on SiN waveguides achieve insertion losses below 0.3 dB, modulation lengths under 50 μm, and GHz bandwidths via geometry and material optimization.
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Magnetocaloric effect of nanostructured La0.6Sr0.4CoO3
Nanostructured La0.6Sr0.4CoO3 made by confinement synthesis exhibits enhanced magnetocaloric parameters linked to particle size and de-agglomeration, positioning it as a candidate for magnetic refrigeration.