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Enhancing Focusing and Defocusing Capabilities with a Dynamically Reconfigurable Metalens Utilizing Sb2Se3 Phase-Change Material

Chen Shen, Jiachi Ye, Nicola Peserico, Yaliang Gui, Chaobo Dong, Haoyan Kang, Behrouz Movahhed Nouri, Hao Wang, Elham Heidari, Volker J. Sorger, Hamed Dalir

2023Nanomaterials22 citationsDOIOpen Access PDF

Abstract

Metalenses are emerging as an alternative to digital micromirror devices (DMDs), with the advantages of compactness and flexibility. The exploration of metalenses has ignited enthusiasm among optical engineers, positioning them as the forthcoming frontier in technology. In this paper, we advocate for the implementation of the phase-change material, Sb2Se3, capable of providing swift, reversible, non-volatile focusing and defocusing within the 1550 nm telecom spectrum. The lens, equipped with a robust ITO microheater, offers unparalleled functionality and constitutes a significant step toward dynamic metalenses that can be integrated with beamforming applications. After a meticulously conducted microfabrication process, we showcase a device capable of rapid tuning (0.1 MHz level) for metalens focusing and defocusing at C band communication, achieved by alternating the PCM state between the amorphous and crystalline states. The findings from the experiment show that the device has a high contrast ratio for switching of 28.7 dB.

Topics & Concepts

Materials scienceFlexibility (engineering)Lens (geology)OptoelectronicsReconfigurabilityElectronicsOpticsMicrofabricationPhase changePhase (matter)Amorphous solidComputer scienceNanotechnologyEngineering physicsTelecommunicationsFabricationPhysicsElectrical engineeringEngineeringChemistryQuantum mechanicsOrganic chemistryMathematicsMedicineStatisticsAlternative medicinePathologyPhase-change materials and chalcogenidesOptical and Acousto-Optic TechnologiesMetamaterials and Metasurfaces Applications