Autofocusing and self-healing of partially blocked circular Airy derivative beams
Anita Kumari, Vasu Dev, Vishwa Pal

TL;DR
This study investigates the autofocusing and self-healing properties of partially blocked circular Airy derivative beams through numerical simulations and experiments, revealing how different blocking types affect their behavior.
Contribution
It introduces a comprehensive analysis of how partial blocking influences autofocusing and self-healing in CADBs, including experimental validation and insights into the role of inner and outer rings.
Findings
Inner ring blocking enhances abrupt autofocusing.
Outer ring blocking delays autofocusing and reduces abruptness.
All types exhibit good self-healing capabilities.
Abstract
We numerically and experimentally study the autofocusing and self-healing of partially blocked circular Airy derivative beams (CADBs). The CADB consists of multiple rings, and partial blocking of CADB with different kinds is achieved by using symmetric and asymmetric binary amplitude masks, enabling blocking of inner/outer rings and sectorially. The CADB blocked with different types possesses the ability to autofocus, however, the required propagation distance for abrupt autofocusing vary with the amount and types of blocking. The abrupt autofocusing is quantified by a maximum k-value, and how fast it changes around the autofocusing distance (). In particular, CADB blocked with inner rings (first/two/three) exhibits an abrupt autofocusing, as the k-value sharply increases [decreases] just before [after] . The maximum k-value always occurs at , which decreases as…
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Taxonomy
TopicsOrbital Angular Momentum in Optics · Microfluidic and Bio-sensing Technologies · Acoustic Wave Resonator Technologies
