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Lithium Niobate as an Optical Waveguide and Its Application to Integrated Optics

机译:铌酸锂作为光波导及其在集成光学中的应用

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The proton-exchanged waveguide formed on MgO-doped lithium niobate crystals is resistant to the optical damage or the photore-fractive effect. Therefore, this waveguide is believed to be a promising device for optical information and processing. However, the optical damage can also be an important problem for this waveguide in the communication wavelength since the high-power optical source is used. In this report, a brief general review on the optical properties and its practical application of the lithium niobate crystal as the optical waveguide are given. Then the experimental research work aimed to clarify the properties and its mechanism of the electrooptic effect and the optical damage or photorefractivity of the lithium niobate optical waveguide is described. In this work, the optical damage in this proton-exchanged waveguide is measured quantitatively at various optical wavelengths including blue and red light by using the holographic grating method and the infrared communication wavelength (1550 nm) by using the prism coupler method. The optical damage is significant not only in blue wavelength but also in the red, and even at 1550 nm with high power (100mW) laser diode for communication. So the optical damage cannot be negligible also in the communication wavelengths. The effect of annealing temperature is also discussed. At the relatively high temperatures, the optical damages are founde to be annealed out. The effect of the applied electric field to the optical damage is experimentally discussed and its enhancement is observed to the applied d.c. and a.c. fields. In conclusion, the optical properties as the electrooptic constant and the optical damage are experimentally measured and the many fundamental data are obtained to realize the useful and practical optical devices.
机译:在掺有MgO的铌酸锂晶体上形成的质子交换波导对光学损伤或光折变效应具有抵抗力。因此,该波导被认为是用于光学信息和处理的有前途的设备。但是,由于使用了高功率光源,因此光学损伤对于该波导在通信波长中也可能是重要的问题。在这份报告中,简要概述了铌酸锂晶体作为光波导的光学性能及其实际应用。然后描述了旨在阐明铌酸锂光波导的电光效应的性质及其机理以及光损伤或光折射率的实验研究工作。在这项工作中,通过全息光栅法和棱镜耦合器法在包括蓝光和红光在内的各种光学波长下定量测量了该质子交换波导中的光学损伤,在红外波长为1550 nm的情况下,进行了测量。使用大功率(100mW)激光二极管进行通讯,不仅在蓝色波长而且在红色光学损伤都很大,甚至在1550 nm处也是如此。因此,在通信波长上的光损伤也不能忽略。还讨论了退火温度的影响。在较高的温度下,发现光学损伤被消除。实验讨论了外加电场对光学损伤的影响,并观察到其对外加直流电的增强。和交流领域。总之,通过实验测量了作为电光常数的光学特性和光学损伤,并获得了许多基本数据,以实现有用和实用的光学器件。

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