Publication | Closed Access
Chiral metamirrors for broadband spin-selective absorption
92
Citations
37
References
2017
Year
SpintronicsPhotonicsEngineeringPhysicsOptical PropertiesChiral MetamirrorNegative-index MetamaterialApplied PhysicsMetasurfacesMetamaterialsChiral MetamirrorsPrevious Chiral MetamirrorsDynamic MetamaterialsElectromagnetic MetamaterialsNanophotonics
Chiral metamirrors are recently proposed metadevices that have the ability of selective reflection for the designated circularly polarized waves. However, previous chiral metamirrors only work in a narrow band, which would limit their potential applications in engineering. Here, we propose an approach towards broadband spin-selective absorption. By combining the chiral resonant modes of two asymmetric split-ring resonators, we design and construct a chiral metamirror that absorbs only the left-handed circularly waves over a broad frequency range. The measured results show a bandwidth of 5.1%, almost 96% larger than that of the narrowband metamirror. Furthermore, the proposed chiral metamirror exhibits prominent performance at oblique incidence, even when high-order diffraction appears. The total thickness of the metamirror is only one-ninth of the wavelength, highly suitable for on-chip integration. Our findings may provide an efficient approach to boost the working bandwidth of the chiral metamirror and could advance its applications in optical instruments.
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