Study of the crystal field and rare-earth magnetism in YF3:Yb3+

The electron paramagnetic resonance spectra (X-band, f ~ 9.42 GHz) of Yb3+ ions have been measured at temperature 15 K in YF3:Yb3+ single crystals. The principal values of the g-tensors, gb = g1 = 1.67, g2 = 2.42, g3 = 5.41, and directions n1 = [0, 1, 0], n2 = [±sin(54.8°), 0, cos(54.8°)], n3 = [∓si...

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Main Authors: A.V. Savinkov, B.F. Gabbasov
Format: Article
Language:English
Published: Kazan Federal University 2017-12-01
Series:Magnetic Resonance in Solids
Subjects:
EPR
Online Access:http://mrsej.kpfu.ru/contents/2017/MRSej_17205.pdf
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spelling doaj-fb76b3811e654085b1f279d0e3ed887b2020-11-24T23:38:04ZengKazan Federal UniversityMagnetic Resonance in Solids2072-59812017-12-0119217205Study of the crystal field and rare-earth magnetism in YF3:Yb3+A.V. Savinkov 0B.F. Gabbasov 1Institute of Physics, Kazan Federal University, Kremlevskaya 18, Kazan 420008, RussiaInstitute of Physics, Kazan Federal University, Kremlevskaya 18, Kazan 420008, RussiaThe electron paramagnetic resonance spectra (X-band, f ~ 9.42 GHz) of Yb3+ ions have been measured at temperature 15 K in YF3:Yb3+ single crystals. The principal values of the g-tensors, gb = g1 = 1.67, g2 = 2.42, g3 = 5.41, and directions n1 = [0, 1, 0], n2 = [±sin(54.8°), 0, cos(54.8°)], n3 = [∓sin(35.2°), 0, cos(35.2°)] of the corresponding principal axes for the Yb3+ ions which replace Y3+ ions at two magnetically nonequivalent sites with the local Cs symmetry in the orthorhombic crystal lattice have been obtained from analysis of the angular dependences of the spectra taken in the static magnetic fields lying in the crystallographic (bc) and (ac) planes. Experimental data are interpreted in the frameworks of the crystal field theory. Using the obtained set of crystal field parameters for Yb3+ ions in the YF3 host related to the crystallographic system of coordinates, we can reproduce satisfactorily the crystal field energies of Yb3+ ions determined earlier from optical measurements.http://mrsej.kpfu.ru/contents/2017/MRSej_17205.pdfcrystal field parametersexchange charge modelEPRtrifluorides
collection DOAJ
language English
format Article
sources DOAJ
author A.V. Savinkov
B.F. Gabbasov
spellingShingle A.V. Savinkov
B.F. Gabbasov
Study of the crystal field and rare-earth magnetism in YF3:Yb3+
Magnetic Resonance in Solids
crystal field parameters
exchange charge model
EPR
trifluorides
author_facet A.V. Savinkov
B.F. Gabbasov
author_sort A.V. Savinkov
title Study of the crystal field and rare-earth magnetism in YF3:Yb3+
title_short Study of the crystal field and rare-earth magnetism in YF3:Yb3+
title_full Study of the crystal field and rare-earth magnetism in YF3:Yb3+
title_fullStr Study of the crystal field and rare-earth magnetism in YF3:Yb3+
title_full_unstemmed Study of the crystal field and rare-earth magnetism in YF3:Yb3+
title_sort study of the crystal field and rare-earth magnetism in yf3:yb3+
publisher Kazan Federal University
series Magnetic Resonance in Solids
issn 2072-5981
publishDate 2017-12-01
description The electron paramagnetic resonance spectra (X-band, f ~ 9.42 GHz) of Yb3+ ions have been measured at temperature 15 K in YF3:Yb3+ single crystals. The principal values of the g-tensors, gb = g1 = 1.67, g2 = 2.42, g3 = 5.41, and directions n1 = [0, 1, 0], n2 = [±sin(54.8°), 0, cos(54.8°)], n3 = [∓sin(35.2°), 0, cos(35.2°)] of the corresponding principal axes for the Yb3+ ions which replace Y3+ ions at two magnetically nonequivalent sites with the local Cs symmetry in the orthorhombic crystal lattice have been obtained from analysis of the angular dependences of the spectra taken in the static magnetic fields lying in the crystallographic (bc) and (ac) planes. Experimental data are interpreted in the frameworks of the crystal field theory. Using the obtained set of crystal field parameters for Yb3+ ions in the YF3 host related to the crystallographic system of coordinates, we can reproduce satisfactorily the crystal field energies of Yb3+ ions determined earlier from optical measurements.
topic crystal field parameters
exchange charge model
EPR
trifluorides
url http://mrsej.kpfu.ru/contents/2017/MRSej_17205.pdf
work_keys_str_mv AT avsavinkov studyofthecrystalfieldandrareearthmagnetisminyf3yb3
AT bfgabbasov studyofthecrystalfieldandrareearthmagnetisminyf3yb3
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