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Acoustic Faraday effect in Tb3Ga5O12

Sytcheva, A.; Löw, U.; Yasin, S.; Wosnitza, J.; Zherlitsyn, S.; Thalmeier, P.; Goto, T.; Wyder, P.; Lüthi, B.

Abstract

The transverse acoustic wave propagating along the [100] axis of the cubic Tb3Ga5O12 (acoustic c44 mode) is doubly degenerate. A magnetic field applied in the direction of propagation lifts this degeneracy and leads to the rotation of the polarization vector - the magnetoacoustic Faraday rotation. Here, we report on the observation and analysis of the magnetoacoustic Faraday effect in Tb3Ga5O12 in static and pulsed magnetic fields. We present also a theoretical model based on magnetoelastic coupling of 4f electrons to both, acoustic and optical phonons and an effective coupling between them. This model explains the observed linear frequency dependence of the Faraday rotation angle.

Involved research facilities

  • High Magnetic Field Laboratory (HLD)
  • Physical Review B 81(2010), 214415

Permalink: https://www.hzdr.de/publications/Publ-14325


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