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Direct laser-writing of ferroelectric single-crystal waveguide architectures in glass for 3D integrated optics

机译:玻璃中用于3D集成光学元件的铁电单晶波导架构的直接激光写入

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摘要

Direct three-dimensional laser writing of amorphous waveguides inside glass has been studied intensely as an attractive route for fabricating photonic integrated circuits. However, achieving essential nonlinear-optic functionality in such devices will also require the ability to create high-quality single-crystal waveguides. Femtosecond laser irradiation is capable of crystallizing glass in 3D, but producing optical-quality single-crystal structures suitable for waveguiding poses unique challenges that are unprecedented in the field of crystal growth. In this work, we use a high angular-resolution electron diffraction method to obtain the first conclusive confirmation that uniform single crystals can be grown inside glass by femtosecond laser writing under optimized conditions. We confirm waveguiding capability and present the first quantitative measurement of power transmission through a laser-written crystal-in-glass waveguide, yielding loss of 2.64?dB/cm at 1530?nm. We demonstrate uniformity of the crystal cross-section down the length of the waveguide and quantify its birefringence. Finally, as a proof-of-concept for patterning more complex device geometries, we demonstrate the use of dynamic phase modulation to grow symmetric crystal junctions with single-pass writing.
机译:作为制造光子集成电路的一种有吸引力的途径,已经深入研究了玻璃内部非晶波导的直接三维激光写入。但是,要在此类设备中实现基本的非线性光学功能,还需要具有创建高质量单晶波导的能力。飞秒激光辐照能够使3D玻璃结晶,但是产生适合于波导的光学质量的单晶结构提出了独特的挑战,这在晶体生长领域是前所未有的。在这项工作中,我们使用高角度分辨率电子衍射方法来获得第一个结论,即在最佳条件下通过飞秒激光写入可以在玻璃内部生长出均匀的单晶。我们确认了波导的能力,并提出了通过激光写入玻璃晶体波导进行的功率传输的首次定量测量,在1530?nm处产生2.64?dB / cm的损耗。我们展示了沿着波导长度的晶体横截面的均匀性,并量化了其双折射。最后,作为对更复杂的器件几何结构进行图案化的概念证明,我们演示了使用动态相位调制通过单遍写入来生长对称晶体结的方法。

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