KBa3Ca4Cu3V7O28 realizes a gapless 3D bipartite quantum spin liquid stabilized by trimer-amplified anisotropy from weak microscopic exchange.
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New ACE and MACE potentials for InP achieve at most 4% error on partial dislocation formation energies versus DFT, outperforming literature models by factors of 4-12 while being computationally faster.
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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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Accurate and Efficient Interatomic Potentials for Dislocations in InP
New ACE and MACE potentials for InP achieve at most 4% error on partial dislocation formation energies versus DFT, outperforming literature models by factors of 4-12 while being computationally faster.