Spin Relaxation Times of Donor Centers Associated with Lithium in Monoisotopic 28 Si

Author:

Ezhevskii Alexander A.1,Detochenko Alexandra P.1,Popkov Sergey A.1,Konakov Anton A.1,Soukhorukov Andrey V.1,Guseinov Davud V.2,Zverev Dmitry G.2,Mamin Georgy V.2,Abrosimov Nikolay V.3,Riemann Helge3

Affiliation:

1. Lobachevsky State University of Nizhni Novgorod

2. Kazan Federal University

3. Leibniz Institute for Crystal Growth

Abstract

We report a detailed study of electron longitudinal and transverse spin relaxation times for Li donors in monoisotopic 28Si over the temperature range 4–20 K using continuous wave and pulsed electron paramagnetic resonance. Comparison of the obtained spin-lattice relaxation times for the states of the isolated donor center and lithium complex LiO showed that due to the presence of orbital degeneracy, relaxation is faster for single lithium than for the LiO complexes with the nondegenerate ground state. For the isolated lithium center in silicon the relaxation is well described by Blume-Orbach process, with the parameters of the spin-orbit coupling ~ 1·10-6 meV compare to Orbach process for LiO complex with spin-orbit coupling parameter ~ 1.5·10-2 meV.

Publisher

Trans Tech Publications, Ltd.

Subject

Condensed Matter Physics,General Materials Science,Atomic and Molecular Physics, and Optics

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