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Achromatic Double-Helix Metalens for Broadband Structured Focusing in the Visible Range
Yeseul Kim1, Jihae Lee2, Menglin Shi3
1Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH), Pohang37673, Republic of Korea.
Abstract:
Achromatic structured focusing in flat optics is important for compact depth-resolved imaging and three-dimensional localization, yet simultaneously achieving broadband operation and a depth-encoding focal field remains challenging. Here, we demonstrate an achromatic double-helix metalens operating across the visible range of 600-650 nm. The target phase profile combines an exact hyperbolic lens phase with a double-helix phase synthesized from Laguerre-Gaussian mode bases, whose coefficients are optimized by particle swarm optimization. Broadband implementation is achieved through a meta-atom library designed by jointly considering phase delay, group delay, and group delay dispersion. The fabricated device exhibits strong structural fidelity and experimentally reproduces the rotating two-lobe focal field at 625 nm as well as across the target wavelength range. This work extends achromatic metalenses beyond conventional focusing to broadband structured focusing and provides a compact platform for depth-resolved imaging.

