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Zone-leveling Czochralski growth and characterization of undoped and MgO-doped near-stoichiometric lithium tantalate crystals
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Zone-leveling Czochralski growth and characterization of undoped and MgO-doped near-stoichiometric lithium tantalate crystals

W.T. Hsu, Z.B. Chen, C.A. You, Mitch M.C. Chou, Y.Y. Lin, Y.C. Huang, D.K. RaiC.W. Lan
Journal of Crystal Growth, 卷.311(1), 頁碼.66-71
12/2008

摘要

A1. Doping A2. Czochralski method A2. Growth from melt A2. Single crystal growth B2. Nonlinear optic materials B2. Photorefractive materials Condensed Matter Physics Materials Chemistry Inorganic Chemistry
Undoped and MgO-doped near-stoichiometric lithium tantalate (SLT) crystals were grown by the zone-leveling Czochralski (ZLCz) technique for the first time from Li-rich solutions (mixed with 1.2 mol% MgO for MgO-doped SLT crystal) having Li-excess feed supplied from below in an iridium crucible. Inclusion-free crystals were obtained. The transmittance along the growth axis was found to be satisfactory (75±1%) having an absorption edge at 264.1±0.5 nm for undoped and 264.8±0.4 nm for MgO-doped SLT crystals. The refractive indices of the crystals were found to be n o =2.1768 and n e =2.1750±0.0002 for undoped and n o =2.1768 and n e =2.1784±0.0006 for MgO-doped SLT crystals, respectively. The Curie temperature and coercive field for the crystals were measured to be 680±3 °C and 1.95±0.65 kV/mm for undoped and 689±0.7 °C and 3.55±0.95 kV/mm for MgO-doped SLT crystals, respectively. ICP measurement gives the Li/Ta ratios as 0.995±0.002 and 0.9755±0.0145 in undoped and MgO-doped SLT crystals, respectively. The Mg/Ta ratio in MgO-doped crystal was measured to be 0.001235±0.00035. The Li/Ta ratio was found to vary along the crystal length in undoped and MgO-doped SLT crystals. The variation of the Mg/Ta ratio in MgO-doped SLT crystals is explained by mass balance equation. © 2008 Elsevier B.V. All rights reserved.

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