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Giant enhancement of interlayer exchange in an ultrathin 2D magnet
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Following the recent isolation of monolayer CrI3, there has been a surge of new two-dimensional van der Waals magnetic materials, whose incorporation in van der Waals heterostructures offers a new platform for spintronics, proximity magnetism, and quantum spin liquids. A primary question in this burgeoning field is how exfoliating crystals to the few-layer limit influences their magnetism. Studies on CrI3 have shown a different magnetic ground state for ultrathin exfoliated films but the origin is not yet understood. Here, we use electron tunneling through few-layer crystals of the layered antiferromagnetic insulator CrCl3 to probe its magnetic order, finding a ten-fold enhancement in the interlayer exchange compared to bulk crystals. Moreover, temperature- and polarization-dependent Raman spectroscopy reveal that the crystallographic phase transition of bulk crystals does not occur in exfoliated films. This results in a different low temperature stacking order and, we hypothesize, increased interlayer exchange. Our study provides new insight into the connection between stacking order and interlayer interactions in novel two-dimensional magnets, which may be relevant for correlating stacking faults and mechanical deformations with the magnetic ground states of other more exotic layered magnets, such as RuCl3.
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Cited by 3 Pith papers
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Giant thermal magnetoconductivity in CrCl$_3$ and a general model for spin-phonon scattering
Thermal conductivity of CrCl3 is enhanced up to 2.2x by magnetic fields up to 18 T, and the effect is modeled as phonon scattering by a field-dependent number of spin fluctuations with a field-independent scattering e...
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Magnetic Proximity Effect in a van der Waals Moir\'e Superlattice
In a BAs/CrI3 moiré bilayer, the magnetic proximity effect varies with interlayer atomic registry and produces spin-split minibands whose energy splitting is tunable by moiré periodicity and electric field.
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Low-temperature monoclinic layer stacking in atomically thin CrI$_3$ crystals
Polarization-resolved Raman spectroscopy shows that atomically thin CrI3 remains in the monoclinic stacking phase at low temperature, unlike bulk CrI3, explaining the antiferromagnetic order in thin multilayers.
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