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Magnetooptics of magnetic-dipole transitions in the rare-earth paramagnetic garnets

U. V. ValievFaculty of Physics, National University of Uzbekistan, 100174, Tashkent, UzbekistanJohn B. GruberDepartment of Physics and Astronomy, the University of Texas at San Antonio, San Antonio, Texas, 78249, USAGary W. BurdickDepartment of Physics, Andrews University, Berrien Springs, MI, 49104, USAVasiliy PelenovichDepartment of Physics, Wuhan University, Wuhan, 430072, ChinaM. E. MalyshevaFaculty of Physics, National University of Uzbekistan, 100174, Tashkent, Uzbekistan
Optics and Spectroscopyjournal2012en
ABI

Annotatsiya

The Faraday effect (FE) of the rare-earth (RE) paramagnetic garnet crystals associated with magnetic-dipole (MD) transitions has been investigated theoretically over a wide temperature range 80 to 300 K. Over this temperature range, the “gyromagnetic” Verdet V () of the Eu3Ga5O12 (EuGG) is not a linear function of the magnetic susceptibility χ measured along the [111] axis. We find that the nontrivial character of the temperature dependence of the MD Verdet constant V () is associated with the presence of a contribution to the Faraday rotation of the Van Vleck “mixing” by an external magnetic field of the Eu3+ electronic states. The optical absorption and magnetic circular dichroism (MCD) of Eu3+ ion in EuGG at 85 K for the MD transition 7 F 0 → 5 D 1 were measured along the [111] axis. We show that the appearance of the MCD feature observed for the absorption line near 526.6 nm for the 7 F 0 → 5 D 1 MD absorption band may be well-explained by the contribution of Van Vleck “mixing” between the Stark singlet states from the 7 F 0 and 7 F 1 multiplet manifolds mixed by the external magnetic field H.

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