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Tunable diffraction-free array in nonlinear photonic crystal

机译:非线性光子晶体中的可调无衍射阵列

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摘要

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 LiTaO3 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.
机译:无衍射光束由于其独特的性能和在各个领域的广泛应用而吸引了越来越多的研究兴趣。尽管已经开发了产生这种光束的许多方法,但是实现可调谐的非衍射光束仍然是挑战。在这里,我们报告了在非线性光子晶体(即2D周期极化LiTaO3晶体)中通过二次谐波产生可调谐的无衍射阵列。在这样的晶体中,通过基于惠更斯-菲涅耳原理适当地设计畴结构来设计二次谐波。只需更改输入波长即可调整生成的无衍射阵列的特性,包括其周期,传播长度和波长。我们的观察不仅丰富了无衍射光学器件,而且在光刻和成像方面有潜在的应用。

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