Photonic crystals in proton-exchanged LiNbO3 waveguides for photonic applications

Deng Jun, Jia Wei, V. Kumar, C. Png, A. Bettiol, A. Danner
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Abstract

Photonic crystals realized in LiNbO3 have a great potential to reduce the size and increase the functionality of integrated optical devices. In order to accomplish these aims, fabrication know-how must be mastered yet it remains relatively uncharted. In this work we report the fabrication and optical characterization of photonic crystal structures in annealed proton exchanged (APE) LiNbO3 waveguides. In our work, channel waveguides were fabricated by photolithography patterning followed by immersing LiNbO3 wafers in molten benzoic acid at 235°C for 5 h. The thickness and the composition profiles of the APE waveguides were measured using the secondary ion mass spectroscopy (SIMS) method. The experimental characterization of the photonic crystal waveguides was performed and a photonic stop band with good sharpness can be observed from the transmission spectra.
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光子应用中质子交换LiNbO3波导中的光子晶体
在LiNbO3中实现的光子晶体在减小集成光学器件的尺寸和增加功能方面具有很大的潜力。为了实现这些目标,必须掌握制造技术,但它仍然相对未知。本文报道了退火质子交换(APE) LiNbO3波导中光子晶体结构的制备和光学特性。在我们的工作中,通过光刻图像化制作通道波导,然后将LiNbO3晶圆浸入熔融苯甲酸中,在235°C下浸泡5小时。使用二次离子质谱(SIMS)方法测量了APE波导的厚度和组成曲线。对光子晶体波导进行了实验表征,从透射光谱中可以观察到具有良好锐度的光子阻挡带。
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