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Main Authors: Bernard, Emma, Jangid, Rahul, Hagström, Nanna Zhou, Madhavi, Meera, Brock, Jeffrey A., Pancaldi, Matteo, De Angelis, Dario, Capotondi, Flavio, Pedersoli, Emanuele, Rockwell, Kyle, Keller, Mark W., Bonetti, Stefano, Fullerton, Eric E., Iacocca, Ezio, Silva, Thomas J., Kukreja, Roopali
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2506.21473
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author Bernard, Emma
Jangid, Rahul
Hagström, Nanna Zhou
Madhavi, Meera
Brock, Jeffrey A.
Pancaldi, Matteo
De Angelis, Dario
Capotondi, Flavio
Pedersoli, Emanuele
Rockwell, Kyle
Keller, Mark W.
Bonetti, Stefano
Fullerton, Eric E.
Iacocca, Ezio
Silva, Thomas J.
Kukreja, Roopali
author_facet Bernard, Emma
Jangid, Rahul
Hagström, Nanna Zhou
Madhavi, Meera
Brock, Jeffrey A.
Pancaldi, Matteo
De Angelis, Dario
Capotondi, Flavio
Pedersoli, Emanuele
Rockwell, Kyle
Keller, Mark W.
Bonetti, Stefano
Fullerton, Eric E.
Iacocca, Ezio
Silva, Thomas J.
Kukreja, Roopali
contents Time-resolved ultrafast extreme ultraviolet (EUV) magnetic scattering is used to study laser-driven ultrafast magnetization dynamics of labyrinthine domains in a [Co/Ni/Pt] multilayer. Our measurements at the Co and Ni M-edges reveal distinct ultrafast distortions of the scattering pattern position and width for Ni compared to Co. Ni shows a strong modification of the scattering pattern, approximately 10 to 40 times stronger than Co. As distortions of the labyrinthine pattern in reciprocal space relate to the modification of domain textures in real space, significant differences in Co and Ni highlight a 3D distortion of the domain pattern in the far-from-equilibrium regime.
format Preprint
id arxiv_https___arxiv_org_abs_2506_21473
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Distinct element-specific nanoscale magnetization dynamics following ultrafast laser excitation
Bernard, Emma
Jangid, Rahul
Hagström, Nanna Zhou
Madhavi, Meera
Brock, Jeffrey A.
Pancaldi, Matteo
De Angelis, Dario
Capotondi, Flavio
Pedersoli, Emanuele
Rockwell, Kyle
Keller, Mark W.
Bonetti, Stefano
Fullerton, Eric E.
Iacocca, Ezio
Silva, Thomas J.
Kukreja, Roopali
Materials Science
Time-resolved ultrafast extreme ultraviolet (EUV) magnetic scattering is used to study laser-driven ultrafast magnetization dynamics of labyrinthine domains in a [Co/Ni/Pt] multilayer. Our measurements at the Co and Ni M-edges reveal distinct ultrafast distortions of the scattering pattern position and width for Ni compared to Co. Ni shows a strong modification of the scattering pattern, approximately 10 to 40 times stronger than Co. As distortions of the labyrinthine pattern in reciprocal space relate to the modification of domain textures in real space, significant differences in Co and Ni highlight a 3D distortion of the domain pattern in the far-from-equilibrium regime.
title Distinct element-specific nanoscale magnetization dynamics following ultrafast laser excitation
topic Materials Science
url https://arxiv.org/abs/2506.21473