Options
Castillo Sepúlveda, Sebastián
Loading...

Nombre preferido
Castillo Sepúlveda, Sebastián
Nombre oficial
Sebastián Rodrigo Castillo Sepúlveda
Afiliación principal
5 results
Now showing 1 - 5 of 5
- PublicationSkyrmion Dynamics in a Double-Disk Geometry under an Electric Current(MDPI, 2022)
; ;Vélez, Javier A. ;Corona, Rosa M. ;Carvalho-Santos, Vagson L. ;Laroze, DavidAltbir, DoraIn this work, we present an analysis of skyrmion dynamics considering Dzyaloshinskii–Moriya interactions in an STNO device with a double-disk geometry. Three regimes were observed as a function of geometric parameters and the electric current density: (i) the skyrmion is annihilating at the system’s border; (ii) the skyrmion moves in a non-circular trajectory alternating its position between the two disks, and (iii) the skyrmion only rotates inside a one-disk subsystem. For the annihilation state, we found that the transient time decays within a stretched exponential law as a function of the electric current. Our results show a 2D state diagram that can guide new experimental work in order to obtain these specific behaviors for new applications based on skyrmion dynamics. © 2022 by the authors.DOI:10.3390/nano12183086; DOI:10.3390/nano12183086 - PublicationMagnetic hopfions in toroidal nanostructures driven by an Oersted magnetic field(American Physical Society, 2021-11-01)
; ;Cacilhas, R. ;Carvalho-Santos, Vagson Luiz ;Corona, Rosa M.Altbir, DoraThe search for magnetic hopfions has been the focus of intense research during the last years. In this direction, and using micromagnetic simulations, we studied the magnetization reversal mechanism in toroidal nanoparticles under the action of an Oersted magnetic field. Our results evidence the nucleation of four magnetic configurations as a function of geometry, two of them being hopfion-like textures. These mechanisms are preferred for large toroidal structures. The annihilation of such texture is indicated by strong changes in the energy, which characterizes a topological transition. - PublicationNucleation and Stability of Toron Chains in Non-Centrosymmetric Magnetic Nanowires(MDPI, 2023)
; ;Corona, Rosa M. ;Saavedra, Eduardo ;Laroze, David ;Espejo, Alvaro P. ;Carvalho-Santos, Vagson L.Altbir, DoraThis work analyzes the magnetic configurations of cylindrical nanowires with a bulk Dzyaloshinskii–Moriya interaction and easy-plane anisotropy. We show that this system allows the nucleation of a metastable toron chain even when no out-of-plane anisotropy exists in the nanowire’s top and bottom surfaces, as usually required. The number of nucleated torons depends on the nanowire length and the strength of an external magnetic field applied to the system. The size of each toron depends on the fundamental magnetic interactions and can be controlled by external stimuli, allowing the use of these magnetic textures as information carriers or nano-oscillator elements. Our results evidence that the topology and structure of the torons yield a wide variety of behaviors, revealing the complex nature of these topological textures, which should present an exciting interaction dynamic, depending on the initial conditions. © 2023 by the authors. - PublicationControlling domain wall chirality by combining hard and soft magnetic materials in planar nanostructures with wire-ring morphology(Elsevier B.V., 2021-01)
;Corona, Rosa M.; ;Altbir, DoraEscrig, JuanVortex domain walls (DWs) are characterized by their chirality, an important property that needs to be controlled for the use of such walls in potential technological applications. In this work we explore a wire-ring structure in which we have alternate hard and soft magnetic materials. Our results evidence that, depending on the materials, it is possible to control the DW chirality when it goes through the ring section. Therefore, this system can be used as a device that controls domain wall chirality. - PublicationShifts in the skyrmion stabilization due to curvature effects in dome- And antidome-shaped surfaces(American Physical Society, 2020-07-01)
;Carvalho-Santos, Vagson Luiz ;Corona, Rosa M. ;Altbir, DoraThe study of curvature-induced effects on the properties of nanostructures has become a cornerstone of magnetism. However, several methodologies usually used for studying nanoscale magnetic systems present difficulties for adequately describing curvature. In this work, we present a method that allows studying, under specific conditions, curved dome/antidome surfaces using an equivalent system without curvature. From the described methodology we obtain the phase diagram between easy-normal and skyrmionic magnetization configurations, as a function of spin-orbit coupling, Dzyaloshinskii-Moriya interaction (DMI), and curvature. The effective DMI of the dome structure increases with the curvature. Nevertheless, the effective anisotropy presents the opposite behavior, decreasing with curvature. These results allow us to conclude that an increase in the skyrmion stability is observed in nanostructures having positive curvature. The presented results propose a route that could facilitate the study of curved nanofilms with intrinsic DMI from comparing them with their planar counterparts.