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Electrically Programmable Terahertz Diatomic Metamolecules for Chiral Optical Control
Author(s) -
Longqing Cong,
Prakash Pitchappa,
Nan Wang,
Ranjan Singh
Publication year - 2019
Publication title -
research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.8
H-Index - 16
ISSN - 2639-5274
DOI - 10.1155/2019/7084251
Subject(s) - control reconfiguration , photonics , chirality (physics) , simple programmable logic device , multiplexing , nanotechnology , metamaterial , materials science , optoelectronics , physics , computer science , logic gate , electronic engineering , chiral anomaly , engineering , logic synthesis , telecommunications , embedded system , logic family , fermion , quantum mechanics , nambu–jona lasinio model
Optical chirality is central to many industrial photonic technologies including enantiomer identification, ellipsometry-based tomography, and spin multiplexing in optical communications. However, a substantial chiral response requires a three-dimensional constituent, thereby making the morphology highly complex to realize structural reconfiguration. Moreover, an active reconfiguration demands intense dosage of external stimuli that pose a major limitation for on-chip integration. Here, we report a low bias, electrically programmable synthetic chiral paradigm with a remarkable reconfiguration among levorotatory, dextrorotatory, achiral, and racemic conformations. The switchable optical activity induced by the chiral conformations enables a transmission-type duplex spatial light modulator for terahertz single pixel imaging. The prototype delivers a new strategy towards reconfigurable stereoselective photonic applications and opens up avenues for on-chip programmable chiral devices with tremendous applications in biology, medicine, chemistry, and photonics.

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