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Title: Metric-torsion duality of optically chiral structures
Authors: Zhang, Y 
Shi, L
Zhang, RY
Duan, J
Ng, J
Chan, CT
Fung, KH 
Issue Date: 24-May-2019
Source: Physical review letters, 24 May 2019, v. 122, no. 20, 200201
Abstract: We develop a metric-torsion theory for chiral structures by using a generalized framework of transformation optics. We show that the chirality is uniquely determined by a metric with the local rotational degree of freedom. In analogy to the dislocation continuum, the chirality can be alternatively interpreted as the torsion tensor of a Riemann-Cartan space, which is mimicked by the anholonomy of the orthonormal basis. As a demonstration, we reveal the equivalence of typical three-dimensional chiral metamaterials in the continuum limit. Our theory provides an analytical recipe to design optical chirality.
Publisher: American Physical Society
Journal: Physical review letters 
ISSN: 0031-9007
EISSN: 1079-7114
DOI: 10.1103/PhysRevLett.122.200201
Rights: © 2019 American Physical Society
The following publication Zhang, Y., Shi, L., Zhang, R. -., Duan, J., Ng, J., Chan, C. T., & Fung, K. H. (2019). Metric-torsion duality of optically chiral structures. Physical Review Letters, 122(20), 200201 is available at https://doi.org/10.1103/PhysRevLett.122.200201.
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