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Detecting Phase-Resolved Magnetization Dynamics by Magneto-Optic Effects at 1550 nm Wavelength

Posted on February 1, 2021February 1, 2021 by Axel Hoffmann

Y. Xiong, Y. Li, R. Bidthanapally, J. Sklenar, M. Hammami, S. Hall, X. Zhang, P. Li, J. E. Pearson, T. Sebastian, G. Srinivasan, A. Hoffmann, H. Qu, V. Novosad, and W. Zhang,
IEEE Transactions on Magnetics 57, 4300807 (2021).

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Topological Hall Effect in a Topological Insulator Interfaced with a Magnetic Insulator
Direct Imaging of Resonant Phonon-Magnon Coupling

News

  • Hoffmann team unveils new way to generate self-sustained spin wave oscillations
  • Numerical modeling captures complex behavior of noncollinear antiferromagnets
  • Bobby Kaman selected for the Mavis Future Faculty Program
  • Spencer Biziorek receives NSF Graduate Research Fellowship
  • How to make magnets act like graphene

Publications

  • Magnetic anisotropy due to localized structural defects in strained yttrium iron garnet thin films
  • Magnonic spontaneous oscillation induced by parametric pumping
  • Micromagnetic simulations for magnetic multipoles
  • Spin orbit torque effect in ultrathin collinear and noncollinear Ir-Mn alloys
  • A personal spin on spin currents
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