High-performance guided-wave acoustooptic beam deflectors

C. Tsai
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Abstract

Results of recent experiments involving guided optical waves and surface acoustic waves have demonstrated that it is possible to achieve very efficient interaction with noncollinear, coplanar Bragg diffraction in LiNbO3 substrate.1 Efficient diffraction results from the fact that both the optical and the SAW are confined in one dimension and that the frequency range of the SAW may be chosen to facilitate a good matching between the confinement of the optical waves and the penetration depth of the SAW. In particular, by employing multiple surface acoustic waves (Fig. 1), deflectors with very large diffraction efficiency-bandwidth product and excellent beam quality have been realized most recently. 1 For example, the frequency response and the light beam quality of a deflector, which has a 360-MHz bandwidth,2 are shown in Figs. 2 and 3, respectively. Total electric drive power of only 200 mW was required to diffract 50% of the incident light power. This particular deflector has deflected a light beam of a 4-mm aperture into 400 resolvable spots at a random-access switching time of 1.24 μsec. The above combination of performance figures far exceeds that obtained previously. It should be possible to achieve even better performance figures by optimizing the optical waveguide and surface acoustic wave parameters.
高性能导波声光光束偏转器
最近的实验结果包括引导光波和表面声波已经证明,在LiNbO3衬底中,可以实现与非共线共面Bragg衍射的非常有效的相互作用有效的衍射是由于光波和声波都被限制在一个维度,并且声波的频率范围可以选择以促进光波的限制和声波的穿透深度之间的良好匹配。特别是利用多个表面声波(图1),最近实现了具有非常大的衍射效率-带宽乘积和优异光束质量的偏转器。1以带宽为360-MHz的偏转器2为例,其频率响应和光束质量分别如图2和图3所示。仅需要200mw的总电力驱动功率就能衍射50%的入射光功率。这种特殊的偏转器以1.24 μsec的随机进入切换时间将孔径为4mm的光束偏转到400个可分辨的点上。上述性能数字的组合远远超过了以前获得的数据。通过优化光波导和表面声波参数,应该可以获得更好的性能数字。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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