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Autori principali: Ojha, Brindaban, Mohanty, Shaktiranjan, Sharma, Bhuvneshwari, Bedanta, Subhankar
Natura: Preprint
Pubblicazione: 2024
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Accesso online:https://arxiv.org/abs/2405.05361
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author Ojha, Brindaban
Mohanty, Shaktiranjan
Sharma, Bhuvneshwari
Bedanta, Subhankar
author_facet Ojha, Brindaban
Mohanty, Shaktiranjan
Sharma, Bhuvneshwari
Bedanta, Subhankar
contents Electron transport combined with magnetism has gained more attention to the spintronics community in the last few decades. Among them, the topological Hall effect (THE), which arises due to the emergent magnetic field of a non-trivial object, is found to be a promising tool for probing the presence of skyrmions. A sizeable Dzyaloshinskii-Moriya interfacial interaction (iDMI) with reduced effective anisotropy can stabilize skyrmions in thin films. Recently, a large iDMI has been predicted in Pt/Co/Re thin film. Here, we investigate the influence of various magnetic interactions on the THE in perpendicularly magnetized Pt/Co/X (X = Ta, Re) thin films. The presence of skyrmions is confirmed via THE and magnetic force microscope (MFM) imaging. Notably, two distinct types of THE signals are observed in the different samples, which are explained using micromagnetic simulations. Our results reveal that exchange interaction, iDMI, effective anisotropy, and saturation magnetization contribute significantly in determining the variations in topological Hall resistivity behavior, which arise from different skyrmionic phases. These findings contribute to the development of novel material systems featuring different skyrmionic phases with potential applications in spintronics.
format Preprint
id arxiv_https___arxiv_org_abs_2405_05361
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Tailoring the Topological Hall Effect in Pt/Co/X (X = Ta, Re) thin films
Ojha, Brindaban
Mohanty, Shaktiranjan
Sharma, Bhuvneshwari
Bedanta, Subhankar
Materials Science
Electron transport combined with magnetism has gained more attention to the spintronics community in the last few decades. Among them, the topological Hall effect (THE), which arises due to the emergent magnetic field of a non-trivial object, is found to be a promising tool for probing the presence of skyrmions. A sizeable Dzyaloshinskii-Moriya interfacial interaction (iDMI) with reduced effective anisotropy can stabilize skyrmions in thin films. Recently, a large iDMI has been predicted in Pt/Co/Re thin film. Here, we investigate the influence of various magnetic interactions on the THE in perpendicularly magnetized Pt/Co/X (X = Ta, Re) thin films. The presence of skyrmions is confirmed via THE and magnetic force microscope (MFM) imaging. Notably, two distinct types of THE signals are observed in the different samples, which are explained using micromagnetic simulations. Our results reveal that exchange interaction, iDMI, effective anisotropy, and saturation magnetization contribute significantly in determining the variations in topological Hall resistivity behavior, which arise from different skyrmionic phases. These findings contribute to the development of novel material systems featuring different skyrmionic phases with potential applications in spintronics.
title Tailoring the Topological Hall Effect in Pt/Co/X (X = Ta, Re) thin films
topic Materials Science
url https://arxiv.org/abs/2405.05361