Can Efficient Fourier-Transform Techniques Favorably Impact on Broadband Computational Electromagnetism?: Compelling Evidence and Implications for Next-Generation Solvers
This paper explores how innovative Fourier transform techniques combined with high-accuracy frequency domain solvers can significantly enhance the simulation of broadband, time-dependent electromagnetic wave propagation and scattering, offering potential for more effective, accurate, and efficient computational modeling across scientific and engineering applications.
In view of recently demonstrated joint use of novel Fourier transform techniques and effective high-accuracy frequency domain solvers related to the method of moments, it is argued that a set of transformative innovations could be developed for the effective, accurate, and efficient simulation of problems of wave propagation and scattering of broadband, time-dependent wavefields. This contribution aims to convey the character of these methods and to highlight their applicability in computational modeling of electromagnetic configurations across various fields of science and engineering.