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Design, fabrication, and evaluation of crystal-cored fibers for efficient second-harmonic generation based on Cerenkov-radiation-type phase matching

机译:基于切伦科夫辐射型相位匹配的高效二次谐波产生的晶芯纤维的设计,制造和评估

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摘要

A formulation for calculating the optical second-harmonic power based on the Cerenkov-radiation-type phase matching is derived for a crystal-cored fiber. The prerequisite condition for high efficiency is expressed by a simple relation by use of the refractive indices of a core crystal, a core radius, and a fundamental wavelength. An organic crystal-cored fiber is designed and practically fabricated by the guiding principle derived here. A blue second-harmonic wave of 1.4 mW is obtained from a 1-mm-long fiber by use of a 60-mW semiconductor laser, and the second-harmonic intensity agrees well with the prediction. Degradation of the organic core crystal caused by the generated blue wave is observed, and the lifetime of the device is evaluated.
机译:针对晶体芯光纤,推导了基于切伦科夫辐射型相位匹配计算光二次谐波功率的公式。通过使用芯晶体的折射率,芯半径和基波波长的简单关系来表示高效的前提条件。根据此处导出的指导原则设计并实际制造了有机晶体芯纤维。通过使用60 mW的半导体激光器,从1毫米长的光纤中获得了1.4毫瓦的蓝色二次谐波,该二次谐波的强度与预测结果非常吻合。观察到由产生的蓝波引起的有机核心晶体的降解,并且评估了器件的寿命。

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