FDTD modeling of transient microwave signals in dispersive and lossy bi-isotropic media A Grande, I Barba, ACL Cabeceira, J Represa, PPM So, WJR Hoefer IEEE transactions on microwave theory and techniques 52 (3), 773-784, 2004 | 65 | 2004 |
Two-dimensional extension of a novel FDTD technique for modeling dispersive lossy bi-isotropic media using the auxiliary differential equation method A Grande, I Barba, ACL Cabeceira, J Represa, K Karkkainen, AH Sihvola IEEE microwave and wireless components letters 15 (5), 375-377, 2005 | 27 | 2005 |
Modelling dispersive dielectrics in TLM method I Barba, ACL Cabeceira, M Panizo, J Represa International Journal of Numerical Modelling: Electronic Networks, Devices …, 2001 | 27 | 2001 |
Quasi-planar chiral materials for microwave frequencies I Barba, ACL Cabeceira, AJ García-Collado, GJ Molina-Cuberos, ... Electromagnetic waves propagation in complex matter, 978-953, 2011 | 23 | 2011 |
Modeling dispersive dielectrics for the 2-D TLM method I Barba, ACL Cabeceira, J Represa, M Panizo, C Pereira IEEE microwave and guided wave letters 6 (4), 174-176, 1996 | 14 | 1996 |
A time-domain modeling for EM wave propagation in bi-isotropic media based on the TLM method ACL Cabeceira, A Grande, I Barba, J Represa IEEE transactions on microwave theory and techniques 54 (6), 2780-2789, 2006 | 13 | 2006 |
Time domain modeling of electromagnetic wave propagation in Tellegen media I Barba, A Grande, ACL Cabeceira, J Represa Microwave and Optical Technology Letters 38 (3), 167-168, 2003 | 12 | 2003 |
Reinterpreting four-stage split-step FDTD methods as two-stage methods A Grande, A Serroukh, I Barba, AC Cabeceira, J é Represa IEEE transactions on antennas and propagation 61 (11), 5818-5821, 2013 | 10 | 2013 |
Chiral media based on printed-circuit board technology: A numerical time-domain approach I Barba, ACL Cabeceira, A Gomez, JÉ Represa IEEE Transactions on Magnetics 45 (3), 1170-1173, 2009 | 10 | 2009 |
A 2D‐TLM model for electromagnetic wave propagation in Tellegen media ACL Cabeceira, I Barba, A Grande, J Represa Microwave and Optical Technology Letters 40 (5), 438-441, 2004 | 10 | 2004 |
A multiresolution model of transient microwave signals in dispersive chiral media I Barba, A Grande, ACL Cabeceira, J Represa IEEE transactions on antennas and propagation 54 (10), 2808-2812, 2006 | 8 | 2006 |
A 2D‐TLM model for electromagnetic wave propagation in chiral media ACL Cabeceira, I Barba, A Grande, J Represa Microwave and Optical Technology Letters 46 (2), 180-182, 2005 | 7 | 2005 |
An approach to multi-resolution in time domain based on the discrete wavelet transform C Repres, C Pereir, ACL Cabeceir, I Barba, J Represa The Applied Computational Electromagnetics Society Journal (ACES), 210-218, 2003 | 7 | 2003 |
Avances en el diseño, caracterización y modelado de medios quirales para frecuencias de microondas J Margineda, GJ Molina-Cuberos, MJ Núñez, AJ García-Collado, ... V EIEC, Aiguablava, 2007 | 5 | 2007 |
The use of sources for TLM modeling of complex materials J Represa, ACL Cabeceira, I Barba 13th Annual review of progress in Applied Computational Electromagnetics …, 1997 | 5 | 1997 |
Application of Schelkunoff's method for simulating isotropic chiral free propagation: clarifying some common errors A Gomez, I Barba, ACL Cabeceira, J Represa, A Vegas, MA Solano Journal of Electromagnetic Waves and Applications 22 (5-6), 861-871, 2008 | 4 | 2008 |
Electromagnetic propagation in unbounded inhomogeneous chiral media using the coupled mode method A Gomez, I Barba, ACL Cabeceira, J Represa, A Vegas, MA Solano Microwave and Optical Technology Letters 49 (11), 2771-2779, 2007 | 4 | 2007 |
Metamateriales con índice de refracción negativo: una nueva frontera en Electromagnetismo JR Fernández, AG Sáez, IB García, AL Cabeceira Revista de ciencias, 15-20, 2013 | 3 | 2013 |
Numerical study of electromagnetic wave propagation through layered structures with chiral media I Barba, A Gomez, ACL Cabeceira, J Represa, A Vegas, MA Solano International Journal of Numerical Modelling: Electronic Networks, Devices …, 2010 | 3 | 2010 |
A Full‐Dielectric Chiral Material Based on a Honeycomb Structure I Barba, A Grande, GJ Molina-Cuberos, ÁJ García-Collado, J Represa, ... International Journal of Antennas and Propagation 2018 (1), 4198243, 2018 | 2 | 2018 |