4.8 Article

Itinerant and Localized Magnetization Dynamics in Antiferromagnetic Ho

Journal

PHYSICAL REVIEW LETTERS
Volume 116, Issue 25, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.116.257202

Keywords

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Funding

  1. U.S. Department of Energy, Office of Science, Office of Basic Energy Sciences [DE-AC02-76SF00515]
  2. U.S. Department of Energy [DE-AC02-07CH11358]
  3. National Center of Competence in Research: Molecular Ultrafast Science and Technology (NCCR MUST)), a research instrument of the Swiss National Science Foundation (SNSF)
  4. Helmholtz Virtual Institute Dynamic Pathways in Multidimensional Landscapes
  5. BMBF [05K13PC1]

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Using femtosecond time-resolved resonant magnetic x-ray diffraction at the Ho L-3 absorption edge, we investigate the demagnetization dynamics in antiferromagnetically ordered metallic Ho after femtosecond optical excitation. Tuning the x-ray energy to the electric dipole (E1, 2p -> 5d) or quadrupole (E2, 2p -> 4f) transition allows us to selectively and independently study the spin dynamics of the itinerant 5d and localized 4f electronic subsystems via the suppression of the magnetic (2 1 3-tau) satellite peak. We find demagnetization time scales very similar to ferromagnetic 4f systems, suggesting that the loss of magnetic order occurs via a similar spin-flip process in both cases. The simultaneous demagnetization of both subsystems demonstrates strong intra-atomic 4f-5d exchange coupling. In addition, an ultrafast lattice contraction due to the release of magneto-striction leads to a transient shift of the magnetic satellite peak.

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