16 November 2020 Programmable coding photonic topological edge waveguide
Yun-Tuan Fang, Er-Pan Fan, Xiao-Xue Li, Zhangxin Wang
Author Affiliations +
Abstract

In order to obtain reconfigurable topological photonic waveguides, we design a two-dimensional photonic crystal with compound triangular lattice. Through rotating the dielectric rods, we change the topological phase of the lattice and achieve the topological edge states. Through the rotation of rods, we divide the two-dimensional structure space into “0” and “1” blocks made of the topologically trivial and nontrivial lattices, respectively. Through programming the codes of “0” and “1,” we can realize diverse transport pathways of light flow. The controllable light pathways will play important role in the optical circuit. The programmable design results have been demonstrated through the simulations of electromagnetic wave transport.

© 2020 Society of Photo-Optical Instrumentation Engineers (SPIE) 0091-3286/2020/$28.00 © 2020 SPIE
Yun-Tuan Fang, Er-Pan Fan, Xiao-Xue Li, and Zhangxin Wang "Programmable coding photonic topological edge waveguide," Optical Engineering 59(11), 117104 (16 November 2020). https://doi.org/10.1117/1.OE.59.11.117104
Received: 27 August 2020; Accepted: 20 October 2020; Published: 16 November 2020
Lens.org Logo
CITATIONS
Cited by 4 scholarly publications.
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Waveguides

Photonic crystals

Optical engineering

Computer programming

Dielectrics

Electromagnetic radiation

Acoustics

RELATED CONTENT

Surface modes and Tamm states in photonic crystals
Proceedings of SPIE (January 16 2006)
Photonic crystals: concepts, devices, and applications
Proceedings of SPIE (September 22 1999)
Analysis of optical splitters in photonic crystals
Proceedings of SPIE (April 25 2002)
Photonic bandgap (PBG) technology for antennae
Proceedings of SPIE (October 28 1996)

Back to Top