Generation and manipulation for high-order catastrophe swallowtail beams

Houan Teng, Yiming Cai, Yanping Ian, Y. Qian
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Abstract

We propose a universal method for generating high-order Swallowtail diffraction catastrophe beams, according to diffraction catastrophe theory. The curved caustic structure of Swallowtail beams (SBs) are derived from the potential function. Due to the complexity of the high-order diffraction catastrophe, the SBs can be tuned to various optical structures. Our experimental results are consistent with the numerical simulations, verifying the correctness of the theory. Further, we report a new family of autofocusing circular swallowtail beams (CSBs). Compared with the previous circular Airy and Pearcey beams, due to higher-order diffraction catastrophe, these CSBs have more propagation trajectories, and therefore seem to have more diversity and tunability. The experimental results are in good agreement with the numerical simulations. These various SBs and CSBs could have potential applications in optical trapping, optical manipulation or medical treatment.
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高阶突变燕尾光束的产生与操纵
根据衍射突变理论,提出了一种产生高阶燕尾衍射突变光束的通用方法。燕尾梁的弯曲腐蚀结构是由势函数推导出来的。由于高阶衍射突变的复杂性,SBs可以调谐到各种光学结构。实验结果与数值模拟结果一致,验证了理论的正确性。此外,我们还报道了一种新的自动对焦圆形燕尾光束(csb)。与之前的圆形Airy和pearcy光束相比,由于高阶衍射突变,这些csb具有更多的传播轨迹,因此似乎具有更多的多样性和可调性。实验结果与数值模拟结果吻合较好。这些不同的SBs和csb在光捕获、光操纵或医疗方面有潜在的应用。
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