Detail publikačního výsledku

Near complete laser-induced modulation of the ferromagnetic-antiferromagnetic phase fraction in FeRh films

PECHEUX, A.; SALVATORE, R.; THEVENARD, L.; ARREGI URIBEETXEBARRIA, J.; UHLÍŘ, V.; ALMANZA, M.; FOURNIER, D.; GOURDON, C.; LOBUE, M.

Originální název

Near complete laser-induced modulation of the ferromagnetic-antiferromagnetic phase fraction in FeRh films

Anglický název

Near complete laser-induced modulation of the ferromagnetic-antiferromagnetic phase fraction in FeRh films

Druh

Článek WoS

Originální abstrakt

With its huge entropy change and a strong interplay between magnetic order, structural and electrical properties, the first-order antiferromagnetic/ferromagnetic phase transition is a paradigmatic example of the multicaloric effect. The unraveling of the physics underlying the phase transition needs a better understanding of the thermal hysteresis of FeRh within the AF-FM phase coexistence region. In this work, we compare the effect of two very different types of thermal cycling on the hysteresis of the magnetic order: quasistatic heating, and cooling of the entire 195 nm thick film, and a f = 100 kHz modulated heating driven by a laser focused down to a spot of about 10 mu m2 at the film surface. Taking advantage of the reflectivity difference between both phases to probe optically their respective fraction, we show that whereas only temperature-driven reflectivity variations (dR/dT , thermoreflectance) are detected in the pure phases, a huge modulation of the phase-dependent reflectance at the driving frequency f is detected in the phase coexistence temperature range. This is quantitatively described as resulting from a substantial modulation of the FM fraction (up to 90%) with increasing laser power. A simplified rate-independent hysteresis model with return-point-memory (RPM), represented in terms of bistable units that undergo a temperature excursion corresponding to a given laser power, reproduces very well the optically measured FM phase modulation characteristics for a broad range of temperature excursions. This offers an insight into the leading role of quenched disorder in defining thermal hysteresis in FeRh under high excitation frequency, when the material is periodically driven out-of-equilibrium.

Anglický abstrakt

With its huge entropy change and a strong interplay between magnetic order, structural and electrical properties, the first-order antiferromagnetic/ferromagnetic phase transition is a paradigmatic example of the multicaloric effect. The unraveling of the physics underlying the phase transition needs a better understanding of the thermal hysteresis of FeRh within the AF-FM phase coexistence region. In this work, we compare the effect of two very different types of thermal cycling on the hysteresis of the magnetic order: quasistatic heating, and cooling of the entire 195 nm thick film, and a f = 100 kHz modulated heating driven by a laser focused down to a spot of about 10 mu m2 at the film surface. Taking advantage of the reflectivity difference between both phases to probe optically their respective fraction, we show that whereas only temperature-driven reflectivity variations (dR/dT , thermoreflectance) are detected in the pure phases, a huge modulation of the phase-dependent reflectance at the driving frequency f is detected in the phase coexistence temperature range. This is quantitatively described as resulting from a substantial modulation of the FM fraction (up to 90%) with increasing laser power. A simplified rate-independent hysteresis model with return-point-memory (RPM), represented in terms of bistable units that undergo a temperature excursion corresponding to a given laser power, reproduces very well the optically measured FM phase modulation characteristics for a broad range of temperature excursions. This offers an insight into the leading role of quenched disorder in defining thermal hysteresis in FeRh under high excitation frequency, when the material is periodically driven out-of-equilibrium.

Klíčová slova

SINGLE-CRYSTAL; PREISACH MODEL; HYSTERESIS; DYNAMICS

Klíčová slova v angličtině

SINGLE-CRYSTAL; PREISACH MODEL; HYSTERESIS; DYNAMICS

Autoři

PECHEUX, A.; SALVATORE, R.; THEVENARD, L.; ARREGI URIBEETXEBARRIA, J.; UHLÍŘ, V.; ALMANZA, M.; FOURNIER, D.; GOURDON, C.; LOBUE, M.

Rok RIV

2026

Vydáno

01.10.2025

Periodikum

Physical Review B

Svazek

112

Číslo

13

Stát

Spojené státy americké

Strany počet

17

URL

BibTex

@article{BUT200644,
  author="{} and  {} and  {} and Jon Ander {Arregi Uribeetxebarria} and Vojtěch {Uhlíř} and  {} and  {} and  {} and  {}",
  title="Near complete laser-induced modulation of the ferromagnetic-antiferromagnetic phase fraction in FeRh films",
  journal="Physical Review B",
  year="2025",
  volume="112",
  number="13",
  pages="17",
  doi="10.1103/fytj-vy5c",
  issn="2469-9950",
  url="https://journals.aps.org/prb/abstract/10.1103/fytj-vy5c"
}