Reconfigurable all-dielectric metalens with diffraction-limited performance
Перенастраиваемая полностью диэлектрическая металинза с дифракционно-ограниченными характеристиками
2021-02-22
SCID: 54.1/8cj55bqt
Discuss with AI
diffraction-limited performancefull 2π phase tuningoptical phase change materialsreconfigurable all-dielectric metalensvarifocal metalens
Figures from the paper
Abstract (AI)
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.
Key Findings
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.
Research Object
a reconfigurable all-dielectric varifocal metalens based on optical phase change materials, operating at 5.2 μm
Research Subject
full-2π phase tuning, switching contrast, optical efficiency and diffraction-limited, aberration-free multi-depth imaging performance under non-mechanical binary reconfiguration
Publication Details
Publication Date
2021-02-22
Journal
Publisher
ISSN
Cited by
417
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest