arXiv · 1803.02633
Magnetic-field-induced crossover from the inverse Faraday effect to the optical orientation in EuTe
Abstract
A time-resolved optical pump-probe technique has been applied for studying the ultrafast dynamics in the magnetic semiconductor EuTe near the absorption band gap. We show that application of external magnetic field up to 6 T results in crossover from the inverse Faraday effect taking place on the femtosecond time scale to the optical orientation phenomenon with an evolution in the picosecond time domain. We propose a model which includes both these processes possessing different spectral and temporal properties. The circularly polarized optical pumping induces the optical electronic transition $4f^75d^0 \rightarrow 4f^65d^1$ forming the absorption band gap in EuTe. The observed crossover is related to a strong magnetic-field shift of the band gap in EuTe at low temperatures. It was found that manipulation of spin states on intrinsic defect levels takes place on a time scale of 19 ps in the applied magnetic field of 6 T.
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V. V. Pavlov, R. V. Pisarev, S. G. Nefedov, I. A. Akimov, D. R. Yakovlev, M. Bayer, A. B. Henriques, P. H. O. Rappl, E. Abramof. 2018-03-07. Magnetic-field-induced crossover from the inverse Faraday effect to the optical orientation in EuTe. https://doi.org/10.1063/1.5027473
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