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Abdel Razik Sebak
Abdel Razik Sebak
Verified email at ece.concordia.ca
Title
Cited by
Cited by
Year
Dense dielectric patch array antenna with improved radiation characteristics using EBG ground structure and dielectric superstrate for future 5G cellular networks
OM Haraz, A Elboushi, SA Alshebeili, AR Sebak
IEEE access 2, 909-913, 2014
2042014
Mutual coupling reduction in millimeter-wave MIMO antenna array using a metamaterial polarization-rotator wall
M Farahani, J Pourahmadazar, M Akbari, M Nedil, AR Sebak, TA Denidni
IEEE Antennas and Wireless Propagation Letters 16, 2324-2327, 2017
2002017
Millimeter-wave compact EBG structure for mutual coupling reduction applications
J Mu'Ath, TA Denidni, AR Sebak
IEEE Transactions on Antennas and Propagation 63 (2), 823-828, 2014
1862014
A printed monopole antenna with two steps and a circular slot for UWB applications
O Ahmed, AR Sebak
IEEE Antennas and Wireless Propagation Letters 7, 411-413, 2008
1862008
A conducting cylinder for modeling human body presence in indoor propagation channel
M Ghaddar, L Talbi, TA Denidni, A Sebak
IEEE Transactions on Antennas and Propagation 55 (11), 3099-3103, 2007
1422007
Compact Multiband Planar Antenna for 2.4/3.5/5.2/5.8-GHz Wireless Applications
A Mehdipour, AR Sebak, CW Trueman, TA Denidni
IEEE Antennas and Wireless Propagation Letters 11, 144-147, 2012
1402012
Gain enhancement of circularly polarized dielectric resonator antenna based on FSS superstrate for MMW applications
M Akbari, S Gupta, M Farahani, AR Sebak, TA Denidni
IEEE Transactions on antennas and Propagation 64 (12), 5542-5546, 2016
1382016
High-gain low-profile circularly polarized slotted SIW cavity antenna for MMW applications
M Asaadi, A Sebak
IEEE Antennas and Wireless Propagation Letters 16, 752-755, 2016
1372016
Design of a 28/38 GHz dual-band printed slot antenna for the future 5G mobile communication Networks
OM Haraz, MMM Ali, S Alshebeili, AR Sebak
2015 IEEE International Symposium on Antennas and Propagation & USNC/URSI …, 2015
1272015
Spatially decoupling of CP antennas based on FSS for 30-GHz MIMO systems
M Akbari, HA Ghalyon, M Farahani, AR Sebak, TA Denidni
IEEE Access 5, 6527-6537, 2017
1222017
Analysis and design of a cylindrical EBG-based directive antenna
H Boutayeb, TA Denidni, K Mahdjoubi, AC Tarot, AR Sebak, L Talbi
IEEE Transactions on Antennas and Propagation 54 (1), 211-219, 2006
1182006
Mutual-coupling reduction using metasurface corrugations for 28 GHz MIMO applications
S Gupta, Z Briqech, AR Sebak, TA Denidni
IEEE Antennas and Wireless Propagation Letters 16, 2763-2766, 2017
1162017
Multi-band miniaturized antenna loaded by ZOR and CSRR metamaterial structures with monopolar radiation pattern
A Mehdipour, TA Denidni, AR Sebak
IEEE Transactions on Antennas and Propagation 62 (2), 555-562, 2013
1132013
Broadband and high-gain circularly-polarized antenna with low RCS
S Zarbakhsh, M Akbari, F Samadi, AR Sebak
IEEE Transactions on Antennas and Propagation 67 (1), 16-23, 2018
1052018
Millimeter-wave EBG-based aperture-coupled dielectric resonator antenna
J Mu'ath, TA Denidni, AR Sebak
IEEE Transactions on Antennas and Propagation 61 (8), 4354-4357, 2013
1002013
High-gain hybrid dielectric resonator antenna for millimeter-wave applications: Design and implementation
A Perron, TA Denidni, AR Sebak
IEEE transactions on Antennas and Propagation 57 (10), 2882-2892, 2009
1002009
Broadband L-shaped dielectric resonator antenna
TA Denidni, Q Rao, AR Sebak
IEEE Antennas and Wireless Propagation Letters 4, 453-454, 2005
962005
High gain and wideband high dense dielectric patch antenna using FSS superstrate for millimeter-wave applications
M Asaadi, I Afifi, AR Sebak
IEEE access 6, 38243-38250, 2018
952018
Optically transparent subarray antenna based on solar panel for CubeSat application
S Zarbakhsh, M Akbari, M Farahani, A Ghayekhloo, TA Denidni, ...
IEEE Transactions on Antennas and Propagation 68 (1), 319-328, 2019
902019
2-D scanning magnetoelectric dipole antenna array fed by RGW butler matrix
MMM Ali, AR Sebak
IEEE Transactions on Antennas and Propagation 66 (11), 6313-6321, 2018
882018
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