4.6 Article

Effect of chirped factors on the abrupt autofocusing ability of a chirped circular Airyprime beam

Journal

OPTICS EXPRESS
Volume 30, Issue 25, Pages 44967-44982

Publisher

Optica Publishing Group
DOI: 10.1364/OE.476887

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Funding

  1. National Natural Science Foundation of China
  2. [11974313]
  3. [11874046]

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This study investigates the effect of introducing first- and second-order chirped factors on the abrupt autofocusing ability of circular Airyprime beam (CAPB). The results show that optimizing the chirped factors can enhance the abrupt autofocusing ability of CAPB.
Recently, a new type of abruptly autofocusing beam called circular Airyprime beam (CAPB) has been reported. Its abrupt autofocusing ability has been proven to be approximately seven times that of a circular Airy beam under the same conditions. Further improving the abrupt autofocusing ability of the CAPB without changing the beam parameters is a concern in optical research. In this study, we investigated the effect of introducing first-and second-order chirped factors on the abrupt autofocusing ability of the CAPB. When the positive first-order chirped factor was below the saturated chirped value, the abrupt autofocusing ability of the chirped CAPB was stronger and the focus position was smaller compared with those of the conventional CAPB. Regarding the abrupt autofocusing ability, there was an optimal value for the first-order chirped factor. At the optimal value, the abrupt autofocusing ability of the chirped CAPB was the strongest. On the other hand, a positive second-order chirped factor promoted the abrupt autofocusing ability of the CAPB and shortened the focus position. The introduction of such value was more effective than the introduction of a positive first-order chirped factor in promoting abrupt autofocusing of the CAPB. The abrupt autofocusing ability of the CAPB was further improved by combining the optimal first-order chirped factor and a positive second-order chirped factor. Finally, the chirped CAPB was experimentally generated, and the corresponding abrupt autofocusing behaviors were measured, validating the theoretical results. Overall, we provide an approach for improving abruptly autofocusing CAPBs.(c) 2022 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement

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