Colossal topological Hall effect at the transition between isolated and lattice-phase interfacial skyrmions

Previous studies of skyrmions in thin film architectures have shown widely-varying magnitudes of the topological Hall effect. Here, Raju et al. show that this variation follows a power-law behaviour driven by chiral spin fluctuations at the phase transition between isolated and lattice skyrmions.

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Autores principales: M. Raju, A. P. Petrović, A. Yagil, K. S. Denisov, N. K. Duong, B. Göbel, E. Şaşıoğlu, O. M. Auslaender, I. Mertig, I. V. Rozhansky, C. Panagopoulos
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/20417698becb454b9056d337303323c1
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spelling oai:doaj.org-article:20417698becb454b9056d337303323c12021-12-02T16:50:25ZColossal topological Hall effect at the transition between isolated and lattice-phase interfacial skyrmions10.1038/s41467-021-22976-62041-1723https://doaj.org/article/20417698becb454b9056d337303323c12021-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-22976-6https://doaj.org/toc/2041-1723Previous studies of skyrmions in thin film architectures have shown widely-varying magnitudes of the topological Hall effect. Here, Raju et al. show that this variation follows a power-law behaviour driven by chiral spin fluctuations at the phase transition between isolated and lattice skyrmions.M. RajuA. P. PetrovićA. YagilK. S. DenisovN. K. DuongB. GöbelE. ŞaşıoğluO. M. AuslaenderI. MertigI. V. RozhanskyC. PanagopoulosNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-7 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
M. Raju
A. P. Petrović
A. Yagil
K. S. Denisov
N. K. Duong
B. Göbel
E. Şaşıoğlu
O. M. Auslaender
I. Mertig
I. V. Rozhansky
C. Panagopoulos
Colossal topological Hall effect at the transition between isolated and lattice-phase interfacial skyrmions
description Previous studies of skyrmions in thin film architectures have shown widely-varying magnitudes of the topological Hall effect. Here, Raju et al. show that this variation follows a power-law behaviour driven by chiral spin fluctuations at the phase transition between isolated and lattice skyrmions.
format article
author M. Raju
A. P. Petrović
A. Yagil
K. S. Denisov
N. K. Duong
B. Göbel
E. Şaşıoğlu
O. M. Auslaender
I. Mertig
I. V. Rozhansky
C. Panagopoulos
author_facet M. Raju
A. P. Petrović
A. Yagil
K. S. Denisov
N. K. Duong
B. Göbel
E. Şaşıoğlu
O. M. Auslaender
I. Mertig
I. V. Rozhansky
C. Panagopoulos
author_sort M. Raju
title Colossal topological Hall effect at the transition between isolated and lattice-phase interfacial skyrmions
title_short Colossal topological Hall effect at the transition between isolated and lattice-phase interfacial skyrmions
title_full Colossal topological Hall effect at the transition between isolated and lattice-phase interfacial skyrmions
title_fullStr Colossal topological Hall effect at the transition between isolated and lattice-phase interfacial skyrmions
title_full_unstemmed Colossal topological Hall effect at the transition between isolated and lattice-phase interfacial skyrmions
title_sort colossal topological hall effect at the transition between isolated and lattice-phase interfacial skyrmions
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/20417698becb454b9056d337303323c1
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