Publication result detail

Current-induced domain wall motion and magnetization dynamics in CoFeB/Cu/Co nanostripes

UHLÍŘ, V.; VOGEL, J.; ROUGEMAILLE, N.; FRUCHART, O.; ISHAQUE, Z.; CROS, V.; CAMARERO, J.; CEZAR, J.; SIROTTI, F.; PIZZINI, S.

Original Title

Current-induced domain wall motion and magnetization dynamics in CoFeB/Cu/Co nanostripes

English Title

Current-induced domain wall motion and magnetization dynamics in CoFeB/Cu/Co nanostripes

Type

Peer-reviewed article not indexed in WoS or Scopus

Original Abstract

Current-induced domain wall motion and magnetization dynamics in the CoFeB layer of CoFeB/Cu/Co nanostripes were studied using photoemission electron microscopy combined with x-ray magnetic circular dichroism (XMCD-PEEM). Quasi-static measurements show that current-induced domain wall motion in the CoFeB layer is similar to the one observed in the NiFe layer of NiFe/Cu/Co trilayers, although the threshold current densities for domain wall depinning are lower. Time-resolved XMCD-PEEM measurements are used as an efficient probe of domain wall depinning statistics. They also reveal that, during the application of current pulses, the CoFeB magnetization rotates in the direction transverse to the nanostripe. The corresponding tilt angles have been quantified and compared to analytical and micromagnetic calculations, highlighting the influence of magnetostatic interactions between the two magnetic layers on the magnetization rotation.

English abstract

Current-induced domain wall motion and magnetization dynamics in the CoFeB layer of CoFeB/Cu/Co nanostripes were studied using photoemission electron microscopy combined with x-ray magnetic circular dichroism (XMCD-PEEM). Quasi-static measurements show that current-induced domain wall motion in the CoFeB layer is similar to the one observed in the NiFe layer of NiFe/Cu/Co trilayers, although the threshold current densities for domain wall depinning are lower. Time-resolved XMCD-PEEM measurements are used as an efficient probe of domain wall depinning statistics. They also reveal that, during the application of current pulses, the CoFeB magnetization rotates in the direction transverse to the nanostripe. The corresponding tilt angles have been quantified and compared to analytical and micromagnetic calculations, highlighting the influence of magnetostatic interactions between the two magnetic layers on the magnetization rotation.

Keywords

X-PEEM, Magnetization, Domain Wall, CoFeB/Cu/Co

Key words in English

X-PEEM, Magnetization, Domain Wall, CoFeB/Cu/Co

Authors

UHLÍŘ, V.; VOGEL, J.; ROUGEMAILLE, N.; FRUCHART, O.; ISHAQUE, Z.; CROS, V.; CAMARERO, J.; CEZAR, J.; SIROTTI, F.; PIZZINI, S.

RIV year

2013

Released

15.12.2011

ISBN

0953-8984

Periodical

JOURNAL OF PHYSICS-CONDENSED MATTER

Volume

24

Number

2

State

United Kingdom of Great Britain and Northern Ireland

Pages from

024213-1

Pages to

024213-9

Pages count

9