ARPES on NiPS3 reveals a many-body feature at the valence band edge matching mixed d7 and d8L multiplet states from NiS6 cluster diagonalization, indicating local Ni-S physics beyond mean-field theory.
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Nickel intercalated beneath epitaxial graphene on SiC(0001) via colloidal nanoparticles and annealing forms stable 2D heterostructures with preserved graphene bands and interfacial magnetism of 0.9 μB per Ni atom.
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Evidence for Many-Body States in NiPS$_3$ Revealed by Angle-Resolved Photoelectron Spectroscopy
ARPES on NiPS3 reveals a many-body feature at the valence band edge matching mixed d7 and d8L multiplet states from NiS6 cluster diagonalization, indicating local Ni-S physics beyond mean-field theory.
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Nickel intercalation in epitaxial graphene on SiC(0001): a novel platform for engineering two-dimensional heterostructures
Nickel intercalated beneath epitaxial graphene on SiC(0001) via colloidal nanoparticles and annealing forms stable 2D heterostructures with preserved graphene bands and interfacial magnetism of 0.9 μB per Ni atom.