Enhanced abrupt autofocusing and depth-of-focus of circular Airy derivative beams via controlled asymmetry
Abstract
We demonstrate simultaneous enhancement of abrupt autofocusing and depth-of-focus (DOF) in circular Airy derivative beams through controlled asymmetry.
The controlled asymmetry enables multiple discrete autofocusing events to merge into a single elongated focal region, thereby enhancing both the autofocusing ability and the DOF.
The DOF is extended by up to 400% with a 32% improvement in autofocusing ability and a ~ 32 {\mu}m focal spot size, whereas the autofocusing ability can be further enhanced by up to 193% with a ~ 56 {\mu}m focal spot size, while maintaining nearly the same DOF.
Experimental results show good agreement with numerical simulations.
The resulting asymmetric circular Airy derivative beams (ACADBs), combining strong abrupt autofocusing with extreme DOF, offer promising applications in optical trapping, optical communications, microfabrication, and biomedical imaging
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