Please use this identifier to cite or link to this item: http://hdl.handle.net/10071/34146
Author(s): Prudêncio, R. F.
Silveirinha, M. G.
Date: 2019
Title: First principles calculation of topological invariants of lossy photonic crystals
Book title/volume: Nanophotonics and Micro/Nano Optics International Conference 2019, Book of Abstracts
Pages: 256 - 257
Event title: NANOP 2019: Functional Nanophotonics
Reference: Prudêncio, R. F., & Silveirinha, M. G. (2019). First principles calculation of topological invariants of lossy photonic crystals. Nanophotonics and Micro/Nano Optics International Conference 2019, Book of Abstracts (pp. 256-257). PremC. http://hdl.handle.net/10071/34146
ISSN: 2678-2987
Abstract: Topological systems have exciting properties that may lead to new physics. The Chern numbers of a material platform are usually written in terms of the Berry curvature which depends on the normal modes of the system. From a computational point of view the calculation of the Chern number can be a rather formidable problem. Here, we use a gauge invariant Green’s function method (Phys. Rev. B, 99, 125155, 2019) to determine the topological invariants. We apply the method to a lossy photonic crystal formed by a hexagonal array of ferrite cylinders embedded in air with radius r=0.35a [Fig.1a]. The Chern numbers are calculated from first principles, i.e., without a tight-binding approximation.
Peerreviewed: no
Access type: Open Access
Appears in Collections:IT-CRI - Comunicações a conferências internacionais

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