Diffraction at the Open End of Dielectric-Lined Circular Waveguide
@article{Galyamin2022DiffractionAT, title={Diffraction at the Open End of Dielectric-Lined Circular Waveguide}, author={Sergey N. Galyamin and Viktor V. Vorobev}, journal={IEEE Transactions on Microwave Theory and Techniques}, year={2022}, volume={70}, pages={3087-3095} }
A rigorous approach for solving canonical circular open-ended dielectric-lined waveguide diffraction problems is presented. This is continuation of our recent paper (Galyamin et al., 2021) where a simpler case of uniform dielectric filling has been considered. Here we use the same analytical approach based on Wiener–Hopf–Fock technique and deal with more complicated case of a layered dielectric filling which is closer to potential applications. The latter are connected with analytical…
One Citation
Diffraction at the Open-Ended Dielectric-Loaded Circular Waveguide
- Physics
- 2021
First, radiation at the open end of a dielectric-loaded circular waveguide is investigated. Rigorous solution obtained via the modified tayloring technique is presented, both far-field and near-field…
References
SHOWING 1-10 OF 16 REFERENCES
IEEE Transactions on Microwave Theory and Techniques and Antennas and Propagation Announce a Joint Special Issue on Ultra-Wideband (UWB) Technology
- Business
- 2010
Before the emergence of ultra-wideband (UWB) radios, widely used wireless communications were based on sinusoidal carriers, and impulse technologies were employed only in specific applications (e.g.…
Radiation and scattering of waves
- Physics
- 1972
As relevant today as it was when it was first published 20 years ago, this book is a classic in the field. Nowhere else can you find more complete coverage of radiation and scattering of waves. The…
Opt
- Computer Science
- 2017
A new language, Opt, is proposed for writing these objective functions over image- or graph-structured unknowns concisely and at a high level and automatically transforms these specifications into state-of-the-art GPU solvers based on Gauss-Newton or Levenberg-Marquardt methods.
Phys
- Rev. 52, 378
- 1937
Phys
- Rev. Accel. Beams 22, 012801
- 2019
Zrelov, Vavilov-Cherenkov Radiation in High- Energy Physics (Israel Program for Scientific Translations
- 1970
IEEE Transactions on Microwave Theory and Techniques , 1 ( 2021 ) . [ 2 ] P . A . Čerenkov
- Phys . Rev .
Laser & Photonics Reviews 14
- 2000021
- 2020
Phys
- Rev. Lett. 124, 054801
- 2020