---
title: "DyFeO 3 thin films under compressive strain exhibit spin reorientation temperature \u003e20 K; room-temperature polarization \u003e3 µC"
sdDatePublished: "2026-09-04T11:30:00Z"
source: "https://www.psi.ch/en/lmx/scientific-highlights/enhanced-spin-reorientation-transition-and-polarization-in-dyfeosub3-thin"
topics:
  - name: "science and technology"
    identifier: "medtop:13000000"
locations:
  - "Switzerland"
---


DyFeO 3 thin films under compressive strain exhibit spin reorientation temperature >20 K; room-temperature polarization >3 µC

Enhanced Spin-Reorientation Transition and Polarization in DyFeO3 Thin Films | Laboratory for Multiscale Materials Experiments | PSI

Enhanced Spin-Reorientation Transition and Polarization in DyFeO 3 Thin Films

Epitaxial strain in antiferromagnetic orthoferrite thin films is predicted to significantly enhance magnetic and polar properties with a shift of the polar response from below 4 K to room temperature and above by strengthening the rare earth-Fe interaction. In DyFeO 3 , the Fe-spins undergo a spin reorientation transition between 40–50 K, and a magnetic field-induced ferroelectric phase transition is triggered by Dy ordering and displacement below 4 K. Here we report an increase in the spin reorientation temperature by more than 20 K in compressively strained DyFeO 3 films. The expected sharp spin transition is several 10 K wide, incomplete and largely suppressed, with the magnetic point group remaining at Γ 4 at all temperatures. The strain-induced Dy ordering above 4 K reduces the magnetic symmetry and introduces room-temperature polar order with the electrical polarization vector oriented along [100] and polarization values of more than 3 µC

Reference: B. Biswas et al . , Advanced Electronic Materials , 2026; 0:e70533

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