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Dual-band chiral metasurface for independent controls of spin-selective reflections

Yue Gou, Hui Feng Ma, Zheng Xing Wang, Liang Wei Wu, Rui Yuan Wu, Tie Jun Cui

2022Optics Express20 citationsDOIOpen Access PDF

Abstract

The development of chiral metasurfaces with spin-selective reflection or transmission provides a new way to control the circularly polarized (CP) waves. However, it is still a great challenge to independently manipulate the polarization, frequency, and phase of the spin-selective reflected waves in different operating bands, which may have potential applications in improving the data capacity of microwave and optical communication systems. Here, a dual-band chiral metasurface is proposed to generate gigantic intrinsic chirality with strong circular dichroism (CD) in two different frequency bands by piecing two typical mono-chiral units together. The polarization, frequency and phase of the spin-selective reflected waves can also be independently designed in the two operating bands by adjusting the configuration of the chiral unit structures. Based on the proposed chiral structures, a dual-band chiral metasurface with spin-selective anomalous reflections is designed and demonstrated by both simulations and experiments. The results show that the polarization of spin-selective reflected waves can be customized by selecting appreciate chiral structures, while the wavefront of the spin-selective reflected waves can be further controlled by designing their arrangement.

Topics & Concepts

OpticsWavefrontPhysicsPolarization (electrochemistry)Circular polarizationReflection (computer programming)Phase (matter)MicrowaveChirality (physics)Phase modulationMetamaterialCircular dichroismPhase conjugationPolarimetryTransmission (telecommunications)WaveplateDichroismElectromagnetic radiationPhase controlReflection coefficientHolographyPhotonicsDiffractionRetroreflectorMetamaterials and Metasurfaces ApplicationsAdvanced Wireless Communication TechnologiesOrbital Angular Momentum in Optics
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