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Chirality invertible superstructure mediated active planar optics.


ABSTRACT: Active planar optical devices that can dynamically manipulate light are highly sought after in modern optics and nanophotonics. The geometric phase derived from the photonic spin-orbit interaction provides an integrated strategy. Corresponding elements usually suffer from static functions. Here, we introduce an inhomogeneously self-organized anisotropic medium featured by photo-invertible chiral superstructure to realize geometric phase elements with continuously tunable working spectrum and light-flipped phase profile. Via preprograming the alignment of a cholesteric liquid crystal mixed with a photo-responsive chiral dopant, we demonstrate light-activated deflector, lens, Airy beam and optical vortex generators. Their polychromatic working bands are reversibly tuned in an ultra-broadband over 1000 nm covering green to telecomm region. The chirality inversion triggers facile switching of functionalities, such as beam steering, focusing/defocusing and spin-to-orbital angular momentum conversion. This work offers a platform for advanced adaptive and multifunctional flat optics with merits of high compactness, low loss and broad bandwidth.

SUBMITTER: Chen P 

PROVIDER: S-EPMC6555801 | biostudies-literature | 2019 Jun

REPOSITORIES: biostudies-literature

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Chirality invertible superstructure mediated active planar optics.

Chen Peng P   Ma Ling-Ling LL   Hu Wei W   Shen Zhi-Xiong ZX   Bisoyi Hari Krishna HK   Wu Sai-Bo SB   Ge Shi-Jun SJ   Li Quan Q   Lu Yan-Qing YQ  

Nature communications 20190607 1


Active planar optical devices that can dynamically manipulate light are highly sought after in modern optics and nanophotonics. The geometric phase derived from the photonic spin-orbit interaction provides an integrated strategy. Corresponding elements usually suffer from static functions. Here, we introduce an inhomogeneously self-organized anisotropic medium featured by photo-invertible chiral superstructure to realize geometric phase elements with continuously tunable working spectrum and lig  ...[more]

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