Topological magnetism in low-dimensional systems is of fundamental and practical importance in condensed-matter physics and material science. Here, using first-principles and Monte Carlo simulations, we present that multiple topological magnetism (i.e., skyrmion and bimeron) can survive in van der Waals heterostructure MnTe2/ZrS2. Arising from interlayer coupling, MnTe2/ZrS2 can harbor a large Dzyaloshinskii-Moriya interaction. This, combined with exchange interaction, yields an intriguing skyrmion phase under a tiny magnetic field of 75 mT. Meanwhile, upon harnessing a small electric field, magnetic bimeron can be observed in MnTe2/ZrS2, suggesting the existence of multiple topological magnetism. Through interlayer sliding, both topologica...
Abstract Magnetic skyrmions, which are topologically protected tiny spin textures, have emerged as i...
Using density functional theory, we propose the (MnSb2Te4)·(Sb2Te3)n family of stoichiometric van de...
Using density functional theory calculations we study atomic, electronic, and magnetic structures an...
The promise of high-density and low-energy-consumption devices motivates the search for layered stru...
The emergence of topological magnetism in two-dimensional (2D) van der Waals (vdW) magnetic material...
As a promising candidate for the much-desired low power consumption spintronic devices, 2D magnetic ...
Magnetic skyrmions in two-dimensional van der Waals materials provide an ideal platform to push skyr...
International audienceThe Dzyaloshinskii-Moriya interaction (DMI), which only exists in noncentrosym...
Since the discovery of ferromagnetic two dimensional 2D van der Waals vdW crystals, significant ...
Two-dimensional materials provide a new platform for discovery of exotic physics and phenomena. They...
The magnetoelectric effect and skyrmions are two fundamental phenomena in the field of condensed-mat...
Multiple magnetic skyrmion phases add an additional degree of freedom for skyrmion-based ultrahigh-d...
Magnetic topological insulators (TI) provide an important material platform to explore quantum pheno...
Using density functional theory calculations we study atomic, electronic, and magnetic structures an...
Magnetic skyrmions are topological spin textures, which usually exist in noncentrosymmetric material...
Abstract Magnetic skyrmions, which are topologically protected tiny spin textures, have emerged as i...
Using density functional theory, we propose the (MnSb2Te4)·(Sb2Te3)n family of stoichiometric van de...
Using density functional theory calculations we study atomic, electronic, and magnetic structures an...
The promise of high-density and low-energy-consumption devices motivates the search for layered stru...
The emergence of topological magnetism in two-dimensional (2D) van der Waals (vdW) magnetic material...
As a promising candidate for the much-desired low power consumption spintronic devices, 2D magnetic ...
Magnetic skyrmions in two-dimensional van der Waals materials provide an ideal platform to push skyr...
International audienceThe Dzyaloshinskii-Moriya interaction (DMI), which only exists in noncentrosym...
Since the discovery of ferromagnetic two dimensional 2D van der Waals vdW crystals, significant ...
Two-dimensional materials provide a new platform for discovery of exotic physics and phenomena. They...
The magnetoelectric effect and skyrmions are two fundamental phenomena in the field of condensed-mat...
Multiple magnetic skyrmion phases add an additional degree of freedom for skyrmion-based ultrahigh-d...
Magnetic topological insulators (TI) provide an important material platform to explore quantum pheno...
Using density functional theory calculations we study atomic, electronic, and magnetic structures an...
Magnetic skyrmions are topological spin textures, which usually exist in noncentrosymmetric material...
Abstract Magnetic skyrmions, which are topologically protected tiny spin textures, have emerged as i...
Using density functional theory, we propose the (MnSb2Te4)·(Sb2Te3)n family of stoichiometric van de...
Using density functional theory calculations we study atomic, electronic, and magnetic structures an...