We theoretically study spin and charge excitations of skyrmion crystals stabilized by conduction-electron-mediated magnetic interactions via spin-charge coupling in a centrosymmetric Kondo-lattice model by large-scale spin-dynamics simulations combined with the kernel polynomial method. We reveal clear segregation of spin and charge excitation channels and nonreciprocal nature of the spin excitations governed by the Fermi-surface geometry, which are unique to the skyrmion crystals in centrosymmetric itinerant hosts and can be a source of novel physical phenomena.Comment: 7 pages, 4 figure
The experimental realization of magnetic skyrmions in centrosymmetric materials has been driven by t...
Magnetic skyrmions are topologically protected spin swirling vertices, which are promising in device...
We investigate the microwave spin excitations of the cubic chiral magnet Fe$_{0.75}$Co$_{0.25}$Si as...
We present a systematic study of the formation of skyrmion crystals in a triangular Kondo Lattice mo...
Using the field theory method and coherent spin state approach, we investigate properties of magneti...
A mutual interplay between the charge and spin degrees of freedom in itinerant magnets leads to a pl...
Kondo lattice models have established themselves as an ideal platform for studying the interplay bet...
The stability of a magnetic skyrmion crystal in a centrosymmetric orthorhombic lattice system is num...
The successful realization of skyrmion-based spintronic devices depends on the easy manipulation of ...
Topological magnetic textures, characterized by integer topological charge $S$, are potential candid...
We study $\mathbb{C}P^2$ Skyrmion crystals in the ferromagnetic SU(3) Heisenberg model with a genera...
Skyrmions are topological magnetic textures that can arise in non-centrosymmetric ferromagnetic mate...
Engineering non trivial topological phases in materials, specially skyrmion-like arrangements, has b...
The spectral signatures of magnetic skyrmions under microwave field excitation are of fundamental in...
We develop a general theory to classify magnetic skyrmions and related spin textures in terms of the...
The experimental realization of magnetic skyrmions in centrosymmetric materials has been driven by t...
Magnetic skyrmions are topologically protected spin swirling vertices, which are promising in device...
We investigate the microwave spin excitations of the cubic chiral magnet Fe$_{0.75}$Co$_{0.25}$Si as...
We present a systematic study of the formation of skyrmion crystals in a triangular Kondo Lattice mo...
Using the field theory method and coherent spin state approach, we investigate properties of magneti...
A mutual interplay between the charge and spin degrees of freedom in itinerant magnets leads to a pl...
Kondo lattice models have established themselves as an ideal platform for studying the interplay bet...
The stability of a magnetic skyrmion crystal in a centrosymmetric orthorhombic lattice system is num...
The successful realization of skyrmion-based spintronic devices depends on the easy manipulation of ...
Topological magnetic textures, characterized by integer topological charge $S$, are potential candid...
We study $\mathbb{C}P^2$ Skyrmion crystals in the ferromagnetic SU(3) Heisenberg model with a genera...
Skyrmions are topological magnetic textures that can arise in non-centrosymmetric ferromagnetic mate...
Engineering non trivial topological phases in materials, specially skyrmion-like arrangements, has b...
The spectral signatures of magnetic skyrmions under microwave field excitation are of fundamental in...
We develop a general theory to classify magnetic skyrmions and related spin textures in terms of the...
The experimental realization of magnetic skyrmions in centrosymmetric materials has been driven by t...
Magnetic skyrmions are topologically protected spin swirling vertices, which are promising in device...
We investigate the microwave spin excitations of the cubic chiral magnet Fe$_{0.75}$Co$_{0.25}$Si as...