Magnetic insulators are a key resource for next-generation spintronic and topological devices. The family of layered metal halides promises varied magnetic states, including ultrathin insulating multiferroics, spin liquids, and ferromagnets, but device-oriented characterization methods are needed to unlock their potential. Here, we report tunneling through the layered magnetic insulator CrI₃ as a function of temperature and applied magnetic field.We electrically detect the magnetic ground state and interlayer coupling and observe a fieldinducedmetamagnetic transition.The metamagnetic transition results in magnetoresistances of 95, 300, and 550% for bilayer, trilayer, and tetralayer CrI₃ barriers, respectively.We further measure inelastic tu...
Atomically thin chromium triiodide (CrI3) has recently been identified as a layered antiferromagneti...
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...
Magnetic insulators are a key resource for next-generation spintronic and topological devices. The f...
Magnetic insulators are a key resource for next-generation spintronic and topological devices. The f...
Layered van der Waals crystals are a rich proving ground for exploring electronic behavior confined ...
Magnetic layered van der Waals crystals are an emerging class of materials giving access to new phys...
The recent discoveries of magnetism in the single atomic layer have opened up a new direction for tw...
Magnetic layered van der Waals crystals are an emerging class of materials giving access to new phys...
We report the observation of a very large negative magnetoresistance effect in a van der Waals tunne...
Thesis (Ph.D.)--University of Washington, 2021Van der Waals (vdW) heterostructures built by the vert...
Magnetic layered van der Waals crystals are an emerging class of materials giving access to new phys...
Magnetic layered van der Waals crystals are an emerging class of materials giving access to new phys...
Since the discovery of graphene, the family of two-dimensional materials has grown, displaying a bro...
Thesis (Ph.D.)--University of Washington, 2020Two-dimensional (2D) van der Waals (vdW) crystals and ...
Atomically thin chromium triiodide (CrI3) has recently been identified as a layered antiferromagneti...
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...
Magnetic insulators are a key resource for next-generation spintronic and topological devices. The f...
Magnetic insulators are a key resource for next-generation spintronic and topological devices. The f...
Layered van der Waals crystals are a rich proving ground for exploring electronic behavior confined ...
Magnetic layered van der Waals crystals are an emerging class of materials giving access to new phys...
The recent discoveries of magnetism in the single atomic layer have opened up a new direction for tw...
Magnetic layered van der Waals crystals are an emerging class of materials giving access to new phys...
We report the observation of a very large negative magnetoresistance effect in a van der Waals tunne...
Thesis (Ph.D.)--University of Washington, 2021Van der Waals (vdW) heterostructures built by the vert...
Magnetic layered van der Waals crystals are an emerging class of materials giving access to new phys...
Magnetic layered van der Waals crystals are an emerging class of materials giving access to new phys...
Since the discovery of graphene, the family of two-dimensional materials has grown, displaying a bro...
Thesis (Ph.D.)--University of Washington, 2020Two-dimensional (2D) van der Waals (vdW) crystals and ...
Atomically thin chromium triiodide (CrI3) has recently been identified as a layered antiferromagneti...
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...