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Bibliographic Details
Main Authors: Orlandini, Francisco T., Devloo, Philippe R. B., Hernández-Figueroa, Hugo E.
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2407.21766
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_version_ 1866909275099496448
author Orlandini, Francisco T.
Devloo, Philippe R. B.
Hernández-Figueroa, Hugo E.
author_facet Orlandini, Francisco T.
Devloo, Philippe R. B.
Hernández-Figueroa, Hugo E.
contents A Waveguide Port Boundary Condition (WPBC) based on the restriction of the approximation space is presented in the context of Finite Element Analysis. As well as reducing the computational domain in the same manner as the traditional WPBC, the proposed scheme further reduces the degrees of freedom at the waveguide ports, simplifies the implementation and seamlessly provides post-processing results such as the reflected power in each waveguide mode. The boundary condition is thoroughly derived, and numerical examples are used as a support for the discussion on topics such as the needed number of modes to be employed at a waveguide port. Finally, a nanograting-based plasmonic sensor is analysed to illustrate further possibilities of the scheme.
format Preprint
id arxiv_https___arxiv_org_abs_2407_21766
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A Waveguide Port Boundary Condition based on approximation space restriction for Finite Element Analysis
Orlandini, Francisco T.
Devloo, Philippe R. B.
Hernández-Figueroa, Hugo E.
Numerical Analysis
65N30, 78M10
G.1.8
A Waveguide Port Boundary Condition (WPBC) based on the restriction of the approximation space is presented in the context of Finite Element Analysis. As well as reducing the computational domain in the same manner as the traditional WPBC, the proposed scheme further reduces the degrees of freedom at the waveguide ports, simplifies the implementation and seamlessly provides post-processing results such as the reflected power in each waveguide mode. The boundary condition is thoroughly derived, and numerical examples are used as a support for the discussion on topics such as the needed number of modes to be employed at a waveguide port. Finally, a nanograting-based plasmonic sensor is analysed to illustrate further possibilities of the scheme.
title A Waveguide Port Boundary Condition based on approximation space restriction for Finite Element Analysis
topic Numerical Analysis
65N30, 78M10
G.1.8
url https://arxiv.org/abs/2407.21766