Low energy-low temperature THz excitations in RFeO<sub>3</sub> (R=La, Pr, Er, Lu)
ORAL
Abstract
We report on low temperature-low energy absorptions of antiferromagnetic and ferromagnetic magnons at ~31.4 and ~26.7 cm-1 in Γ4 (Gx, Ay, Fz )-LaFeO3 with degeneracy lifted linearly by an applied field up to 7 T. In addition to these modes, in LuFeO3 ligand distortions induced by Lu 4f14 smaller radius trigger subtle changes at the perovskite B site, allowing THz Fe3+ Zeeman -split electronic crystal field (CF) ground state 6A1(S) transitions at ~10.4 cm-1. This local non-centrosymmetric departure is also found in ErFeO3 (Kramers 4f11 Er3+ ; Γ2 (Fx, Cy, Gz)<TSR ~93 K), but now with the Fe3+ Zeeman branching strongly biased by the 3d-4f exchange toward higher energies. At 5 K, there is no field induced band split but a 13-fold increase in the resonance antiferro/ferro intensity ratio. It is also remarkable the CF applied field-dependent population, matching balance between Fe3+ lower and higher Zeeman -split levels. Some Er3+ ground state transitions coincide with phonon frequencies, suggesting strong spin-phonon interactions. Antiferro and ferro resonances turn much broader when non-Kramers Pr3+, containing two unpaired 4f2 electrons, introduces ligand changes at the A site leading the antiferro mode and the lowest Pr3+ CF transition into near degeneracy. They merge into a single broad unresolved feature at 7 T.
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Presenters
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Néstor E Massa
CONICET-UNLP
Authors
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Néstor E Massa
CONICET-UNLP
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Karsten Holldack
HZB, BESSY II, Berlin, Germany
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Thomas Lohmiller
HZB, BESSY II, Berlin, Germany
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Leire Del Campo
CNRS-CEMHTI, Orléans, France
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Vinh Ta Phuoc
GREMAN, Tours, France
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Paula Kayser
CSEC-UE, Edinburgh,UK
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José A Alonso
ICMM-CSIC, Madrid, Spain