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1.
Sci Rep ; 12(1): 19179, 2022 Nov 10.
Article in English | MEDLINE | ID: mdl-36357466

ABSTRACT

Magnetic skyrmions are meta-stable spin structures that naturally emerge in magnetic materials. While a vast amount of effort has gone into the study of their properties, their counterpart of opposite topological charge, the anti-skyrmion, has not received as much attention. We aim to close this gap by deploying Monte Carlo simulations of spin-lattice systems in order to investigate which interactions support anti-skyrmions, as well as skyrmions of Bloch and Néel type. We find that the combination of ferromagnetic exchange and Dzyaloshinskii-Moriya (DM) interactions is able to stabilize each of the three types, depending on the specific structure of the DM interactions. Considering a three-dimensional spin lattice model, we provide a finite-temperature phase diagram featuring a stable anti-skyrmion lattice phase for a large range of temperatures. In addition, we also shed light on the creation and annihilation processes of these anti-skyrmion tubes and study the effects of the DM interaction strength on their typical size.

2.
Nat Commun ; 13(1): 3035, 2022 May 31.
Article in English | MEDLINE | ID: mdl-35641499

ABSTRACT

The discovery of two-dimensional magnets has initiated a new field of research, exploring both fundamental low-dimensional magnetism, and prospective spintronic applications. Recently, observations of magnetic skyrmions in the 2D ferromagnet Fe3GeTe2 (FGT) have been reported, introducing further application possibilities. However, controlling the exhibited magnetic state requires systematic knowledge of the history-dependence of the spin textures, which remains largely unexplored in 2D magnets. In this work, we utilise real-space imaging, and complementary simulations, to determine and explain the thickness-dependent magnetic phase diagrams of an exfoliated FGT flake, revealing a complex, history-dependent emergence of the uniformly magnetised, stripe domain and skyrmion states. The results show that the interplay of the dominant dipolar interaction and strongly temperature dependent out-of-plane anisotropy energy terms enables the selective stabilisation of all three states at zero field, and at a single temperature, while the Dzyaloshinksii-Moriya interaction must be present to realise the observed Néel-type domain walls. The findings open perspectives for 2D devices incorporating topological spin textures.

3.
Nat Commun ; 12(1): 2723, 2021 May 11.
Article in English | MEDLINE | ID: mdl-33976177

ABSTRACT

Magnetic skyrmions are topologically non-trivial, swirling magnetization textures that form lattices in helimagnetic materials. These magnetic nanoparticles show promise as high efficiency next-generation information carriers, with dynamics that are governed by their topology. Among the many unusual properties of skyrmions is the tendency of their direction of motion to deviate from that of a driving force; the angle by which they diverge is a materials constant, known as the skyrmion Hall angle. In magnetic multilayer systems, where skyrmions often appear individually, not arranging themselves in a lattice, this deflection angle can be easily measured by tracing the real space motion of individual skyrmions. Here we describe a reciprocal space technique which can be used to determine the skyrmion Hall angle in the skyrmion lattice state, leveraging the properties of the skyrmion lattice under a shear drive. We demonstrate this procedure to yield a quantitative measurement of the skyrmion Hall angle in the room-temperature skyrmion system FeGe, shearing the skyrmion lattice with the magnetic field gradient generated by a single turn Oersted wire.

4.
Nat Commun ; 11(1): 1726, 2020 Apr 07.
Article in English | MEDLINE | ID: mdl-32265449

ABSTRACT

Magnetic skyrmions are topologically nontrivial particles with a potential application as information elements in future spintronic device architectures. While they are commonly portrayed as two dimensional objects, in reality magnetic skyrmions are thought to exist as elongated, tube-like objects extending through the thickness of the host material. The study of this skyrmion tube state (SkT) is vital for furthering the understanding of skyrmion formation and dynamics for future applications. However, direct experimental imaging of skyrmion tubes has yet to be reported. Here, we demonstrate the real-space observation of skyrmion tubes in a lamella of FeGe using resonant magnetic x-ray imaging and comparative micromagnetic simulations, confirming their extended structure. The formation of these structures at the edge of the sample highlights the importance of confinement and edge effects in the stabilisation of the SkT state, opening the door to further investigation into this unexplored dimension of the skyrmion spin texture.

5.
Int J Clin Pract ; 52(2): 81-3, 1998 Mar.
Article in English | MEDLINE | ID: mdl-9624786

ABSTRACT

A trial was carried out to determine if walking unpremedicated patients to the operating theatre would prove acceptable to the patients. One hundred surgical patients from a short-stay-ward were randomised into experimental (walked to theatre by ward nurse) and control (taken to theatre on a hospital trolley) groups. Seventy-eight patients responded to a questionnaire; a large majority indicated they would like to be given the choice of mode of conveyance and perceived this as an improvement in patient care. The results showed that a more favourable impression of walking to the theatre was given by patients who had actually experienced it, and of those given the opportunity to walk, almost all reported that it made them feel more relaxed. The findings are discussed in relation to patient choice, efficiency gains and a reduction in manual handling.


Subject(s)
Operating Rooms , Transportation of Patients/methods , Adult , Humans , Locomotion , Middle Aged , Patient Acceptance of Health Care , Surveys and Questionnaires
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