Folgen
Wending Mai
Wending Mai
The Pennsylvania State University
Bestätigte E-Mail-Adresse bei ieee.org - Startseite
Titel
Zitiert von
Zitiert von
Jahr
Prism-Based DGTD With a Simplified Periodic Boundary Condition to Analyze FSS With D2n Symmetry in a Rectangular Array Under Normal Incidence
W Mai, P Li, H Bao, X Li, L Jiang, J Hu, DH Werner
IEEE Antennas and Wireless Propagation Letters 18 (4), 771-775, 2019
342019
Complete polarization conversion using anisotropic temporal slabs
J Xu, W Mai, DH Werner
Optics Letters 46 (6), 1373-1376, 2021
292021
Broadband transparent chiral mirrors: Design methodology and bandwidth analysis
W Mai, D Zhu, Z Gong, X Lin, Y Chen, J Hu, DH Werner
AIP Advances 9 (4), 2019
212019
An efficient and stable 2-D/3-D hybrid discontinuous Galerkin time-domain analysis with adaptive criterion for arbitrarily shaped antipads in dispersive parallel-plate pair
W Mai, J Hu, P Li, H Zhao
IEEE Transactions on Microwave Theory and Techniques 65 (10), 3671-3681, 2017
182017
Generalized temporal transfer matrix method: a systematic approach to solving electromagnetic wave scattering in temporally stratified structures
J Xu, W Mai, DH Werner
Nanophotonics 11 (7), 1309-1320, 2022
142022
Characterizing EMI radiation physics for edge-and broad-side coupled connectors
YS Cao, X Wang, W Mai, Y Wang, L Jiang, AE Ruehli, S He, H Zhao, J Hu, ...
2017 IEEE International Symposium on Electromagnetic Compatibility & Signal …, 2017
132017
Antireflection temporal coatings: comment
W Mai, J Xu, DH Werner
Optica 8 (6), 824-825, 2021
122021
A straightforward updating criterion for 2-D/3-D hybrid discontinuous Galerkin time-domain method controlling comparative error
W Mai, P Li, CG Li, M Jiang, W Hao, L Jiang, J Hu
IEEE Transactions on Microwave Theory and Techniques 66 (4), 1713-1722, 2018
122018
A knotted metamolecule with axisymmetric strong optical activity
W Mai, L Kang, R Jenkins, D Zhu, C Mao, PL Werner, Y Chen, DH Werner
Advanced optical materials 8 (23), 2000948, 2020
72020
Prismatic discontinuous Galerkin time domain method with an integrated generalized dispersion model for efficient optical metasurface analysis
W Mai, SD Campbell, EB Whiting, L Kang, PL Werner, Y Chen, ...
Optical Materials Express 10 (10), 2542-2559, 2020
62020
An efficient 2D/3D hybrid DGTD transient analysis for arbitrarily shaped anti-pads in power-ground plate-pair
W Mai, J Hu
2017 International Applied Computational Electromagnetics Society Symposium …, 2017
62017
Analytical transient analysis of temporal boundary value problems using the d’Alembert formula
W Mai, DH Werner
Optics Letters 46 (22), 5727-5730, 2021
52021
Avoiding the time-static simplification in the simulation of time-varying materials
W Mai, J Xu, DH Werner
2021 International Applied Computational Electromagnetics Society Symposium …, 2021
42021
2-D/3-D hybrid DGTD method with adaptive criterion controlling 2-D simplification error
W Mai, W Hao, C Li, J Hu, P Li
2018 IEEE International Conference on Computational Electromagnetics (ICCEM …, 2018
42018
Fundamental asymmetries between spatial and temporal boundaries in electromagnetics
W Mai, J Xu, DH Werner
Symmetry 15 (4), 858, 2023
32023
Conductive mixed-order generalized dispersion model for noble metals in the optical regime
W Mai, SD Campbell, DH Werner
Optics Express 29 (19), 30520-30531, 2021
32021
Temporal multi-stage energy pumping
W Mai, J Xu, DH Werner
Optics Letters 47 (10), 2494-2497, 2022
22022
Design of a FSS filter with shorting stubs for compact e-plane duplexer application
B Wang, Q Wang, A Liao, L Chen, W Mai
2009 3rd IEEE International Symposium on Microwave, Antenna, Propagation and …, 2009
22009
Wave-number domain analysis for determining the response of linear space-invariant time-varying systems
W Mai, J Xu, A Das, DH Werner
Physical Review A 108 (4), 043504, 2023
12023
Early detection of neurological degenerative diseases based on the protein chirality detection with microwaves
W Mai, Y Chen, X Lin
2020 IEEE Asia-Pacific Microwave Conference (APMC), 965-967, 2020
12020
Das System kann den Vorgang jetzt nicht ausführen. Versuchen Sie es später erneut.
Artikel 1–20