Yonatan Sivan

Senior Academic

An efficient solver for the generalized normal modes of non-uniform open optical resonators

Parry Y. Chen, Yonatan Sivan, Egor A. Muljarov

Modal expansion is an attractive technique for solving electromagnetic scattering problems. With the one set of resonator modes, calculated once and for all, any configuration of near-field or far-field sources can be obtained almost instantaneously. Traditionally applied to closed systems, a simple and rigorous generalization of modal expansion to open systems using eigenpermittivity states is also available. These open modes are suitable for typical nanophotonic systems, for example. However, the numerical generation of modes is usually the most difficult and time-consuming step of modal expansion techniques. Here, we demonstrate efficient and reliable mode generation, expanding the target modes into the modes of a simpler open system that are known. Such a re-expansion technique is implemented for resonators with non-uniform permittivity profiles, demonstrating its rapid convergence. Key to the method's success is the inclusion of a set of longitudinal basis modes.

Publication language English
Journal Journal of Computational Physics
Volume 422
Publication status Published - 01.12.2020
109754

Keywords

Mode solver
Normal mode expansion
Open systems
Spatially-varying permittivity

ASJC Scopus subject areas

Numerical Analysis
Modeling and Simulation
Physics and Astronomy (miscellaneous)
General Physics and Astronomy
Computer Science Applications
Computational Mathematics
Applied Mathematics
Access to Document
10.1016/j.jcp.2020.109754
Other files and links
Link to publication in Scopus