衍射
光子晶体
光子学
材料科学
光电子学
光学
物理
作者
Dongmei Liu,Dunzhao Wei,Yong Zhang,Zhenhua Chen,Rui Ni,Bo Yang,Xiao Hu,Yi-qiang Qin,Shining Zhu,Min Xiao
摘要
Abstract Diffraction-free beams have attracted increasing research interests because of their unique performances and broad applications in various fields. Although many methods have been developed to produce such beams, it is still challenging to realize a tunable non-diffracting beam. Here, we report the generation of a tunable diffraction-free array through second-harmonic generation in a nonlinear photonic crystal, i.e., a 2D periodically-poled LiTaO 3 crystal. In such a crystal, the second-harmonic wave is engineered by properly designing the domain structure based on the Huygens-Fresnel principle. The characteristics of the generated diffraction-free array including its period, propagation length, and wavelength can be tuned by simply changing the input wavelength. Our observation not only enriches the diffraction-free optics, but also has potential applications for photolithography and imaging.
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