Treffer: A semi-definite optimization method for maximizing the shared band gap of topological photonic crystals

Title:
A semi-definite optimization method for maximizing the shared band gap of topological photonic crystals
Source:
Journal of Computational Physics. 521:113538
Publication Status:
Preprint
Publisher Information:
Elsevier BV, 2025.
Publication Year:
2025
Document Type:
Fachzeitschrift Article
File Description:
application/xml
Language:
English
ISSN:
0021-9991
DOI:
10.1016/j.jcp.2024.113538
DOI:
10.48550/arxiv.2407.19699
Rights:
Elsevier TDM
CC BY NC SA
Accession Number:
edsair.doi.dedup.....1c017d10eec09d5ca1a0ff7ee077cf5a
Database:
OpenAIRE

Weitere Informationen

Topological photonic crystals (PCs) can support robust edge modes to transport electromagnetic energy in an efficient manner. Such edge modes are the eigenmodes of the PDE operator for a joint optical structure formed by connecting together two photonic crystals with distinct topological invariants, and the corresponding eigenfrequencies are located in the shared band gap of two individual photonic crystals. This work is concerned with maximizing the shared band gap of two photonic crystals with different topological features in order to increase the bandwidth of the edge modes. We develop a semi-definite optimization framework for the underlying optimal design problem, which enables efficient update of dielectric functions at each time step while respecting symmetry constraints and, when necessary, the constraints on topological invariants. At each iteration, we perform sensitivity analysis of the band gap function and the topological invariant constraint function to linearize the optimization problem and solve a convex semi-definite programming (SDP) problem efficiently. Numerical examples show that the proposed algorithm is superior in generating optimized optical structures with robust edge modes.