The recent discovery of magnetism in atomically thin layers of van der Waals (vdW) crystals has created new opportunities for exploring magnetic phenomena in the two-dimensional (2D) limit. In most 2D magnets studied to date, the c-axis is an easy axis, so that at zero applied field the polarization of each layer is perpendicular to the plane. Here, we demonstrate that atomically thin CrCl3 is a layered antiferromagnetic insulator with an easy-plane normal to the c-axis, that is, the polarization is in the plane of each layer and has no preferred direction within it. Ligand-field photoluminescence at 870 nm is observed down to the monolayer limit, demonstrating its insulating properties. We investigate the in-plane magnetic order using tunn...
Since the discovery of graphene, the family of two-dimensional materials has grown, displaying a bro...
The magnetic state of atomically thin semiconducting layered antiferromagnets such as CrI3 and CrCl3...
The magnetic state of atomically thin semiconducting layered antiferromagnets such as CrI3 and CrCl3...
Changes in the spin configuration of atomically thin, magnetic van der Waals multilayers can cause d...
The magnetic phase diagram of thin-layered antiferromagnets is revealed experimentally by investigat...
Layered van der Waals crystals are a rich proving ground for exploring electronic behavior confined ...
Changes in the spin configuration of atomically thin, magnetic van der Waals multilayers can cause d...
CrCl3 is a layered insulator that undergoes a crystallographic phase transition below room temperatu...
CrCl3 is a layered insulator that undergoes a crystallographic phase transition below room temperatu...
The recent discovery of magnetism in two dimensional 2D materials has inspired efforts to understa...
The recent discovery of magnetism in two dimensional 2D materials has inspired efforts to understa...
The recent discovery of magnetism in two dimensional 2D materials has inspired efforts to understa...
The recent discoveries of magnetism in the single atomic layer have opened up a new direction for tw...
The monolayer halides CrX$_3$ (X=Cl, Br, I) attract significant attention for realizing 2D magnets w...
The monolayer halides CrX$_3$ (X=Cl, Br, I) attract significant attention for realizing 2D magnets w...
Since the discovery of graphene, the family of two-dimensional materials has grown, displaying a bro...
The magnetic state of atomically thin semiconducting layered antiferromagnets such as CrI3 and CrCl3...
The magnetic state of atomically thin semiconducting layered antiferromagnets such as CrI3 and CrCl3...
Changes in the spin configuration of atomically thin, magnetic van der Waals multilayers can cause d...
The magnetic phase diagram of thin-layered antiferromagnets is revealed experimentally by investigat...
Layered van der Waals crystals are a rich proving ground for exploring electronic behavior confined ...
Changes in the spin configuration of atomically thin, magnetic van der Waals multilayers can cause d...
CrCl3 is a layered insulator that undergoes a crystallographic phase transition below room temperatu...
CrCl3 is a layered insulator that undergoes a crystallographic phase transition below room temperatu...
The recent discovery of magnetism in two dimensional 2D materials has inspired efforts to understa...
The recent discovery of magnetism in two dimensional 2D materials has inspired efforts to understa...
The recent discovery of magnetism in two dimensional 2D materials has inspired efforts to understa...
The recent discoveries of magnetism in the single atomic layer have opened up a new direction for tw...
The monolayer halides CrX$_3$ (X=Cl, Br, I) attract significant attention for realizing 2D magnets w...
The monolayer halides CrX$_3$ (X=Cl, Br, I) attract significant attention for realizing 2D magnets w...
Since the discovery of graphene, the family of two-dimensional materials has grown, displaying a bro...
The magnetic state of atomically thin semiconducting layered antiferromagnets such as CrI3 and CrCl3...
The magnetic state of atomically thin semiconducting layered antiferromagnets such as CrI3 and CrCl3...