A Time-Domain Method of Auxiliary Sources for Analyzing Transient Electromagnetic Interactions with GSTC-Modeled Metasurfacess

Fuente: arXiv
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Autores principales: Kouroublakis, Minas, Tsitsas, Nikolaos L., Leviatan, Yehuda
Formato: Preprint
Publicado: 2026
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author Kouroublakis, Minas
Tsitsas, Nikolaos L.
Leviatan, Yehuda
author_facet Kouroublakis, Minas
Tsitsas, Nikolaos L.
Leviatan, Yehuda
contents This paper presents a time domain (TD) formulation for modeling the transient electromagnetic response of two-dimensional (2D) metasurfaces using the Method of Auxiliary Sources (MAS) combined with the Generalized Sheet Transition Condition (GSTC). In the proposed approach, the frequency-domain impedance type GSTC is transformed into a causal, convolution-based TD representation and integrated within the MAS formulation. rfaces.
format Preprint
id arxiv_https___arxiv_org_abs_2605_08047
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle A Time-Domain Method of Auxiliary Sources for Analyzing Transient Electromagnetic Interactions with GSTC-Modeled Metasurfacess
Kouroublakis, Minas
Tsitsas, Nikolaos L.
Leviatan, Yehuda
Computational Physics
This paper presents a time domain (TD) formulation for modeling the transient electromagnetic response of two-dimensional (2D) metasurfaces using the Method of Auxiliary Sources (MAS) combined with the Generalized Sheet Transition Condition (GSTC). In the proposed approach, the frequency-domain impedance type GSTC is transformed into a causal, convolution-based TD representation and integrated within the MAS formulation. rfaces.
title A Time-Domain Method of Auxiliary Sources for Analyzing Transient Electromagnetic Interactions with GSTC-Modeled Metasurfacess
topic Computational Physics
url https://arxiv.org/abs/2605.08047