Dual-polarity plasmonic metalens for visible light
Плазмонная мета-линза двойной полярности для видимого света
2012-11-13
SCID: 54.1/kvwm2254
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circularly polarized lightdual-polarity plasmonic metalenshelicity-controllable focusinghelicity-dependent phase discontinuitiesplasmonic flat metamaterial lens
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Abstract (AI)
Surface topography and refractive index profile dictate the deterministic functionality of a lens. The polarity of most lenses reported so far, that is, either positive (convex) or negative (concave), depends on the curvatures of the interfaces. Here we experimentally demonstrate a counter-intuitive dual-polarity flat lens based on helicity-dependent phase discontinuities for circularly polarized light. Specifically, by controlling the helicity of the input light, the positive and negative polarity are interchangeable in one identical flat lens. Helicity-controllable real and virtual focal planes, as well as magnified and demagnified imaging, are observed on the same plasmonic lens at visible and near-infrared wavelengths. The plasmonic metalens with dual polarity may empower advanced research and applications in helicity-dependent focusing and imaging devices, angular-momentum-based quantum information processing and integrated nano-optoelectronics. The wide range of properties encountered in metamaterials make them promising for numerous optical applications. Chenet al. build a plasmonic flat metamaterial lens with an abrupt phase change that functions as a convex lens for one handedness of light and a concave lens for the other.
Key Findings
1
A plasmonic flat lens experimentally demonstrates switchable positive and negative optical polarity controlled by the helicity of circularly polarized light.
2
Dual-polarity operation offers potential for helicity-dependent focusing and imaging, angular-momentum-based quantum information processing, and integrated nano-optoelectronics.
3
Helicity-dependent phase discontinuities enable the same metalens to function as either a convex or concave lens without changing its physical structure.
4
The lens produces helicity-controllable real and virtual focal planes at visible and near-infrared wavelengths.
5
The same plasmonic metalens enables helicity-dependent magnified and demagnified imaging.
Research Object
dual-polarity plasmonic flat lens (metalens) for circularly polarized visible and near-infrared light
Research Subject
helicity-controlled interchange of positive and negative optical polarity, including real and virtual focusing and magnified and demagnified imaging
Publication Details
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2012-11-13
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