Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/100235
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Title: Topological theory for perfect metasurface isolators
Authors: Wong, WC 
Wang, W 
Yau, WT 
Fung, KH 
Issue Date: 15-Mar-2020
Source: Physical review B : covering condensed matter and materials physics, 15 Mar. 2020, v. 101, no. 12, 121405
Abstract: We introduce a topological theory of perfect isolation: perfect transmission from one side and total reflection from the other side simultaneously. The theory provides an efficient approach for determining whether such a perfect-isolation point exists within a finite parameter space. Herein, we demonstrate the theory using an example of a Lorentz nonreciprocal metasurface composed of dimer unit cells. Our theory also suggests that perfect-isolation points can annihilate each other through the coalescence of opposite topological charges. Our findings could lead to novel designs for high-performance optical isolators.
Publisher: American Physical Society
Journal: Physical review B : covering condensed matter and materials physics 
ISSN: 2469-9950
EISSN: 2469-9969
DOI: 10.1103/PhysRevB.101.121405
Rights: © 2020 American Physical Society
The following publication Wong, W. C., Wang, W., Yau, W. T., & Fung, K. H. (2020). Topological theory for perfect metasurface isolators. Physical Review B, 101(12), 121405 is available at https://doi.org/10.1103/PhysRevB.101.121405.
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