Reconfigurable all-dielectric metalens with diffraction-limited performance

Перенастраиваемая полностью диэлектрическая металинза с дифракционно-ограниченными характеристиками
Hualiang Zhang, Juejun Hu, Qingyang Du, Jeffrey B. Chou, Carlos Rı́os, Mikhail Y. Shalaginov, Sensong An, Yifei Zhang, Clayton Fowler, Tian Gu, Anu Agarwal, Myungkoo Kang, Kathleen A. Richardson, Christopher Roberts, Vladimir Liberman, Clara Rivero‐Baleine, Fan Yang, Peter Su
2021-02-22

diffraction-limited performancefull 2π phase tuningoptical phase change materialsreconfigurable all-dielectric metalensvarifocal metalens
Active metasurfaces, whose optical properties can be modulated post-fabrication, have emerged as an intensively explored field in recent years. The efforts to date, however, still face major performance limitations in tuning range, optical quality, and efficiency, especially for non-mechanical actuation mechanisms. In this paper, we introduce an active metasurface platform combining phase tuning in the full 2π range and diffraction-limited performance using an all-dielectric, low-loss architecture based on optical phase change materials (O-PCMs). We present a generic design principle enabling binary switching of metasurfaces between arbitrary phase profiles and propose a new figure-of-merit (FOM) tailored for reconfigurable meta-optics. We implement the approach to realize a high-performance varifocal metalens operating at 5.2 μm wavelength. The reconfigurable metalens features a record large switching contrast ratio of 29.5 dB. We further validate aberration-free and multi-depth imaging using the metalens, which represents a key experimental demonstration of a non-mechanical tunable metalens with diffraction-limited performance.
1
A generic design principle enables binary switching between arbitrary metasurface phase profiles, supported by a new figure of merit for reconfigurable meta-optics.
2
A reconfigurable varifocal metalens operating at 5.2 μm achieves a record switching contrast ratio of 29.5 dB.
3
The metalens demonstrates aberration-free and multi-depth imaging, confirming diffraction-limited performance without mechanical actuation.
4
The paper introduces an all-dielectric, low-loss active metasurface platform using optical phase-change materials for full-2π phase tuning.

a reconfigurable all-dielectric varifocal metalens based on optical phase change materials, operating at 5.2 μm

full-2π phase tuning, switching contrast, optical efficiency and diffraction-limited, aberration-free multi-depth imaging performance under non-mechanical binary reconfiguration

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Publication Date
2021-02-22
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Authors
Hualiang Zhang
Juejun Hu
Qingyang Du
Jeffrey B. Chou
Carlos Rı́os
Mikhail Y. Shalaginov
Sensong An
Yifei Zhang
Clayton Fowler
Tian Gu
Anu Agarwal
Myungkoo Kang
Kathleen A. Richardson
Christopher Roberts
Vladimir Liberman
Clara Rivero‐Baleine
Fan Yang
Peter Su
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