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Pockels Coefficients Characterization of Pure and Iron Doped Lithium Niobate Using Adaptive Optics and the Czochralski Crystal Growth Technique

机译:使用自适应光学和切克劳斯基晶体生长技术对纯铁掺杂铌酸锂的普克尔系数表征

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We have measured the r_c (effective electrooptical coefficient) of pure and doped Ferroelectric Lithium Niobate (LN) using a single beam, null detection polarimeter. The polarimeter is adjustable between two adaptive optics configurations - an iris hard stop beam pattern on the one hand and a diffractive optics generated top-hat beam on the other. Through the measurements, we clearly show the need to control thermal heating of LN due to transmitted laser beam. The required heating control has been implemented using a fabricated metallic heat sink called a "Cold Finger." In addition to its electrooptical properties, LN possesses a combination of unique piezoelectric, pyroelectric, and photorefractive properties. These properties make it suitable for applications in optical devices as frequency doublers, modulators, switches, and filters in communication systems and holographic recording medium. We present the classical microscopic anharmonic oscillator description for generating Pockels coefficients, and briefly describe the polarimetry measurement system. Finally, the growth of pure and iron doped lithium Niobate is also described using an Automatic Diameter Control Czochralski Design growth technique. Here, the results of growth, electrooptic measurements, adaptive optics implementation and some physical properties are compared and presented.
机译:我们已经使用单束零检测旋光仪测量了纯的和掺杂的铁电铌酸锂(rN)的r_c(有效电光系数)。旋光仪可在两种自适应光学器件配置之间进行调节-一方面是虹膜硬光阑光束图案,另一方面是衍射光学器件产生的礼帽光束。通过这些测量,我们清楚地表明需要控制由于透射激光束而引起的LN热加热。所需的加热控制已通过使用称为“冷指”的金属制散热器实现。除了其电光特性外,LN还具有独特的压电,热电和光折射特性的组合。这些特性使其适合在光学设备中用作通信系统和全息记录介质中的倍频器,调制器,开关和滤波器。我们介绍了用于生成普克尔斯系数的经典微观非谐振荡器描述,并简要介绍了偏振测量系统。最后,还使用自动直径控制切克劳斯基设计生长技术描述了纯铁掺杂的铌酸锂的生长。在这里,比较并给出了生长,电光测量,自适应光学实现和一些物理特性的结果。

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