Please use this identifier to cite or link to this item: https://rep.vsu.by/handle/123456789/36607
Title: Growth, structure, and polarized spectroscopy of monoclinic Er3+:MgWO4 crystal
Authors: Zhang, Wang L.
Lin, Z.
Zhang, G.
Chen, W.
Basyrova, L.
Loiko, P.
Camy, P.
Slimi, S.
Sole, R. M.
Mateos, X.
Aguilo, M.
Diaz, F.
Dunina, E.
Kornienko, A.
Griebner, U.
Petrov, V.
Wang, L.
Issue Date: 2022
Publisher: The Optical Society
Citation: Growth, structure, and polarized spectroscopy of monoclinic Er3+:MgWO4 crystal / L. Zhang, Z. Lin, G. Zhang [et al.] // Optical Materials Express. – 2022. – Vol. 12, N. 5. – P. 2028–2040. – DOI 10.1364/OME.449649.
Series/Report no.: Optical Materials Express;Vol. 12, N. 5
Abstract: We report on the growth, structure, and polarized spectroscopy of a novel promising laser crystal, erbium-doped magnesium monotungstate, Er3+ :MgWO4. 1.01 t.% Er3+ :MgWO4 was grown by the Top-Seeded Solution Growth method using Na2WO4 as a solvent. The crystal structure was refined by the Rietveld method. Er3+ :MgWO4 belongs to the monoclinic class (sp. gr. P2/c, wolframite-type structure, lattice parameters: a = 4.6939(6) Å, b = 5.6747(4) Å, c = 4.9316(6) Å and β = 90.7858(4) Å. The transition intensities for Er3+ ions were determined using the Judd-Ofelt theory accounting for an intermediate configuration interaction (ICI). Er3+ ions in MgWO4 exhibit intense, strongly polarized and broad absorption and emission bands owing to their accommodation in distorted low-symmetry sites (C2). The stimulated-emission cross-section for the 4 I13/2 → 4 I15/2 transition is 0.31×10−20 cm2 at 1637 nm (light polarization: E || b). The radiative lifetime of the 4 I13/2 state is 4.85 ± 0.05 ms. The multiphonon non-radiative relaxation for Er3+ excited multiplets is quantified. Er3+ ions in MgWO4 feature large Stark splitting of the ground-state, ∆E(4 I15/2) = 435 cm−1 . Er3+ :MgWO4 is ttractive for low-threshold lasers at ∼1.64 µm.
URI: https://rep.vsu.by/handle/123456789/36607
ISSN: 2159-3930
Appears in Collections:Научные публикации (2022)

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