Spectra of optical absorption and energy levels diagram of Er3+ ions in bulk crystals of aluminum nitride


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Abstract

The absorption spectra of the Er3+ ions embedded in the AlN matrix have been investigated. The admixture of erbium was introduced in bulk AlN crystals by diffusion. The absorption lines, which are associated with the intraconfigurational electronic ff-transitions from the ground 4I15/2-state to the levels of ion Er3+ excited states have been observed in the spectral range of 370–700 nm. The transitions to the state levels 4F9/2, 2H11/2, 4F7/2, 4F5/2, 2H9/2, and 4G11/2 have been investigated in detail at the temperature T = 2 K. The number of the observed lines for these transitions coincides with the theoretically possible one for the electronic ff-transitions in the ions Er3+, which are in the crystal field with the symmetry below cubic. The narrowness of the observed lines and their number convincingly testify the replacement of preferably one regular crystalline position by erbium ions. The implementation of Er3+ in the Al3+ position with the local symmetry C3v appears the most probable. The energy positions of the levels of excited states for the investigated transitions have been determined. The diagram of the Er3+ ion energy levels in the AlN crystals has been built.

About the authors

N. K. Poletaev

Ioffe Institute

Email: A.Skvortsov@mail.ioffe.ru
Russian Federation, St. Petersburg

A. P. Skvortsov

Ioffe Institute

Author for correspondence.
Email: A.Skvortsov@mail.ioffe.ru
Russian Federation, St. Petersburg

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