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Magnetoelastic Dynamics of the Spin Jahn-Teller Transition in CoTi2O5

  • K. Guratinder
  • , R. D. Johnson
  • , D. Prabhakaran
  • , R. A. Taylor
  • , F. Lang
  • , S. J. Blundell
  • , L. S. Taran
  • , S. V. Streltsov
  • , T. J. Williams
  • , S. R. Giblin
  • , T. Fennell
  • , K. Schmalzl
  • , C. Stock

Research output: Contribution to journalArticlepeer-review

Abstract

CoTi2⁢O5 has the paradox that low temperature static magnetic order is incompatible with the crystal structure owing to a mirror plane that exactly frustrates magnetic interactions. Despite no observable structural distortion with diffraction, CoTi2⁢O5
does magnetically order below 𝑇𝑁∼25  K with the breaking of spin ground state degeneracy proposed to be a realization of the spin Jahn-Teller effect in analogy to the celebrated orbital Jahn-Teller transition. We apply neutron and Raman spectroscopy to study the dynamics of this transition in CoTi2⁢O5 . We find anomalous acoustics associated with a symmetry breaking strain that characterizes the spin Jahn-Teller transition. Crucially, the energy of this phonon coincides with the energy scale of the magnetic excitations, and has the same symmetry of an optic mode, observed with Raman spectroscopy, which atypically softens in energy with decreasing temperature. Taken together, we propose that the energetics of the spin Jahn-Teller effect in CoTi2⁢O5 are related to cooperative magnetoelastic fluctuations as opposed to conventional soft critical dynamics which typically drive large measurable static displacements.
Original languageEnglish
Article number256702
Pages (from-to)1-7
Number of pages7
JournalPhysical Review Letters
Volume134
Issue number25
Early online date25 Jun 2025
DOIs
Publication statusPublished - 27 Jun 2025

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