Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Antiferromagnetic skyrmion crystal in Janus monolayer CrSi2N2As2

View through CrossRef
Abstract Antiferromagnetic skyrmion crystal (AF-SkX), a regular array of antiferromagnetic skyrmions, is a fundamental phenomenon in the field of condensed-matter physics. So far, only very few proposals have been made to realize the AF-SkX, and most based on three-dimensional (3D) materials. Herein, using first-principles calculations and Monte-Carlo simulations, we report the identification of AF-SkX in two-dimensional lattice of Janus monolayer CrSi2N2As2. Arising from the broken inversion symmetry and strong spin-orbit coupling, large Dzyaloshinskii–Moriya interaction is obtained in Janus monolayer CrSi2N2As2. This, combined with the geometric frustration of its triangular lattice, gives rise to the skyrmion physics and long-sought AF-SkX in the presence of external magnetic field. More intriguingly, this system presents two different antiferromagnetic skyrmion phases, and such phenomenon is distinct from those reported in 3D systems. Furthermore, by contacting with Sc2CO2, the creation and annihilation of AF-SkX in Janus monolayer CrSi2N2As2 can be achieved through ferroelectricity. These findings greatly enrich the research on antiferromagnetic skyrmions.
Title: Antiferromagnetic skyrmion crystal in Janus monolayer CrSi2N2As2
Description:
Abstract Antiferromagnetic skyrmion crystal (AF-SkX), a regular array of antiferromagnetic skyrmions, is a fundamental phenomenon in the field of condensed-matter physics.
So far, only very few proposals have been made to realize the AF-SkX, and most based on three-dimensional (3D) materials.
Herein, using first-principles calculations and Monte-Carlo simulations, we report the identification of AF-SkX in two-dimensional lattice of Janus monolayer CrSi2N2As2.
Arising from the broken inversion symmetry and strong spin-orbit coupling, large Dzyaloshinskii–Moriya interaction is obtained in Janus monolayer CrSi2N2As2.
This, combined with the geometric frustration of its triangular lattice, gives rise to the skyrmion physics and long-sought AF-SkX in the presence of external magnetic field.
More intriguingly, this system presents two different antiferromagnetic skyrmion phases, and such phenomenon is distinct from those reported in 3D systems.
Furthermore, by contacting with Sc2CO2, the creation and annihilation of AF-SkX in Janus monolayer CrSi2N2As2 can be achieved through ferroelectricity.
These findings greatly enrich the research on antiferromagnetic skyrmions.

Related Results

Skyrmions in magnetic thin film heterostructures
Skyrmions in magnetic thin film heterostructures
Magnetic skyrmion is expected to function as an ideal information carrier for ultra-high density magnetic storage and logic functional device in the future due to its superior prop...
Harnessing Skyrmion Hall Effect by Thickness Gradients in Wedge-Shaped Samples of Cubic Helimagnets
Harnessing Skyrmion Hall Effect by Thickness Gradients in Wedge-Shaped Samples of Cubic Helimagnets
The skyrmion Hall effect, which is regarded as a significant hurdle for skyrmion implementation in thin-film racetrack devices, is theoretically shown to be suppressed in wedge-sha...
Artificial skyrmion in magnetic multilayers
Artificial skyrmion in magnetic multilayers
A magnetic skyrmion is a promising candidate for information carrier in future logic functional devices, ultra-density storage devices, and neuromorphic computing. The presence of ...
A systematic literature review of Janus kinase inhibitors for the treatment of systemic sclerosis
A systematic literature review of Janus kinase inhibitors for the treatment of systemic sclerosis
Objectives: The use of Janus kinase inhibitors is increasing in systemic sclerosis, a complex autoimmune disease characterized by fibrosis, vasculopathy, and immune dys...
Driving Biomineralisation Using Soft Templation
Driving Biomineralisation Using Soft Templation
<p>Sea shells, bones and teeth are three examples of Nature's unrivalled ability to produce complex hierarchical structures from simple inorganic materials. Unlike the synthe...
Anomalous skyrmion drag in magnetic multilayers
Anomalous skyrmion drag in magnetic multilayers
Abstract Magnetic skyrmion, one of the intriguing topological textures in magnetic materials, exhibits various excellent properties for fundamental research and realistic...
Dzyaloshinskii-Moriya Interactions of Skyrmions for Memory and Logic Devices
Dzyaloshinskii-Moriya Interactions of Skyrmions for Memory and Logic Devices
A skyrmion is considered to be a swirling quasi-particle that can exhibit nano-size disturbances similar to those by a knot of twisting magnetic field lines. The "tangles" observed...

Back to Top