Publication detail

Speed limits of the laser-induced phase transition in FeRh

MATTERN, M. JARECKI, J. ARREGI URIBEETXEBARRIA, J. UHLÍŘ, V. RÖSSLE, M. BARGHEER, M.

Original Title

Speed limits of the laser-induced phase transition in FeRh

Type

journal article in Web of Science

Language

English

Original Abstract

We use ultrafast x-ray diffraction and the polar time-resolved magneto-optical Kerr effect to study the laser-induced metamagnetic phase transition in two FeRh films with thicknesses below and above the optical penetration depth. In the thin film, we identify an intrinsic timescale for the light-induced nucleation of ferromagnetic (FM) domains in the antiferromagnetic material of 8ps, which is substantially longer than the time it takes for strain waves to traverse the film. For the inhomogeneously excited thicker film, only the optically excited near-surface part transforms within 8ps. For strong excitations, we observe an additional slow rise of the FM phase, which we experimentally relate to a growth of the FM phase into the depth of the layer by comparing the transient magnetization in frontside and backside excitation geometry. In the lower lying parts of the film, which are only excited via near-equilibrium heat transport, the FM phase emerges significantly slower than 8ps after heating above the transition temperature.

Keywords

x-ray diffraction; ultrafast x-ray diffraction

Authors

MATTERN, M.; JARECKI, J.; ARREGI URIBEETXEBARRIA, J.; UHLÍŘ, V.; RÖSSLE, M.; BARGHEER, M.

Released

1. 5. 2024

Publisher

AIP Publishing

Location

MELVILLE

ISBN

2166-532X

Periodical

APL Materials

Year of study

12

Number

5

State

United States of America

Pages count

7

URL

Full text in the Digital Library

BibTex

@article{BUT189775,
  author="Maximilian {Mattern} and Jasmin {Jarecki} and Jon Ander {Arregi Uribeetxebarria} and Vojtěch {Uhlíř} and Matti {Rössle} and Matias {Bargheer}",
  title="Speed limits of the laser-induced phase transition in FeRh",
  journal="APL Materials",
  year="2024",
  volume="12",
  number="5",
  pages="7",
  doi="10.1063/5.0206095",
  issn="2166-532X",
  url="https://pubs.aip.org/aip/apm/article/12/5/051124/3295280/Speed-limits-of-the-laser-induced-phase-transition"
}