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Linear Tuning of Phase-Matching Temperature in LiNbO3:Zr Crystals by MgO Co-Doping

机译:MgO共掺杂对LiNbO3:Zr晶体中相匹配温度的线性调谐

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摘要

We grew a series of co-doped LiNbO crystals with fixed 1.5 mol % ZrO and various MgO concentrations (1.0, 3.0, 4.0, 6.0 mol %), and investigated their optical properties and defect structures. By 3.0 mol % MgO co-doping, the optical damage resistance at 532 nm reached 6.5 × 10 W/cm , while the phase-matching temperature for doubling 1064 nm was only 29.3 °C—close to room temperature—which was conducive to realizing the 90° phase matching at room temperature by slightly modulating the incident angle of the fundamental beam. Notably, we found that the phase-matching temperature increased linearly with the increase of MgO doping, and this linear dependence helped us to grow the high-quality crystal for room temperature 90° phase matching. Moreover, the defect analysis indicated that the linear tuning of phase-matching temperature might be attributed to + neutral pairs in crystals.
机译:我们生长了一系列固定掺杂1.5 mol%ZrO和各种MgO浓度(1.0、3.0、4.0、6.0 mol%)的共掺杂LiNbO晶体,并研究了它们的光学性质和缺陷结构。通过共掺杂3.0 mol%MgO,在532 nm处的光学损伤抵抗力达到6.5×10 W / cm,而用于倍增1064 nm的相匹配温度仅为29.3°C(接近室温),这有助于实现通过稍微调节基本光束的入射角,在室温下实现90°相位匹配。值得注意的是,我们发现相匹配温度随MgO掺杂的增加而线性增加,这种线性依赖性帮助我们为室温90°相匹配生长出高质量的晶体。此外,缺陷分析表明,相位匹配温度的线性调谐可能归因于晶体中的+中性对。

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