Mr. Mohammadjavad Shabanpoursheshpoli | intelligent metamaterial | Best Researcher Award
Mr. Aalto University, Finland
Mohammadjavad Shabanpoursheshpoli is a dedicated Marie Curie Early-stage researcher and PhD candidate specializing in applied electromagnetics and telecommunications, with a focus on Reconfigurable Intelligent Surfaces (RIS) for 5G and 6G wireless networks. He has published over 10 journal papers and received several prestigious awards, including the 2023 Nokia Foundation scholarship for outstanding research in RIS-based 6G networks. He was an invited speaker at Metamaterials 2023 and named the best-performing research fellow of the Meta wireless project in 2022. He holds a PhD from Aalto University and has earned full scholarships and top academic rankings throughout his education.
Professional Profiles:
🎓 Education
Ph.D.Aalto University, Espoo, Finland5/5 (passed all 40 credits)M.Sc.Iran University of Science & Technology, Tehran, Iran16.65/20B.Sc.Babol Noshirvani University of Technology, Babol, Iran
📜 Honours & Awards
🎓 Motivated and Accomplished Researcher
Marie Curie Early-Stage Researcher (PhD candidate) specializing in applied electromagnetics and telecommunication, focusing on Reconfigurable Intelligent Surfaces for 5G and 6G wireless networks.
Committed to advancing telecommunication technology through a combination of rigorous theory and practical expertise, resulting in 10+ published journal papers recognized within the academic community.
🏅 2023 Nokia Foundation Scholarship
Recognized for outstanding research contributions in the field of RIS-based 6G wireless networks.
🎤 Invited Speaker
Accepted as an invited speaker for the 17th International Congress on Artificial Materials for Novel Wave Phenomena (Metamaterials 2023) in Greece.
🌟 Best-Performing Research Fellow
Selected as the “2022 best-performing research fellow of the Meta Wireless Project” in Gaeta, Italy (14 Nov. 2022).
🎓 Full Scholarships
Received a full scholarship from H2020 Marie Skłodowska-Curie Innovative Training Networks (ITNs) under grant agreement NO 956256.
Awarded a full scholarship from Noshirvani Institute of Technology & Iran University of Science and Technology (tuition waiver).
📚 Top-Cited Paper
Awarded a top-cited paper 2020-2021 in Annalen der Physik by Wiley.
📈 Academic Achievements
Ranked 3rd GPA among the graduating class in the master’s program at Iran University of Science and Technology.Ranked within the top 0.05% in the Iranian university entrance exam for a master’s degree in electrical engineering (2016).Ranked within the top 0.1% in the Iranian university entrance exam for a bachelor’s degree (2012).
✍️Publications Top Note :
“Ultrafast reprogrammable multifunctional vanadium-dioxide-assisted metasurface for dynamic THz wavefront engineering”
(Scientific Reports, 2020) – Cited 103 times.
“Deep neural network-based automatic metasurface design with a wide frequency range”
(Scientific Reports, 2021) – Cited 72 times.
“Asymmetric spatial power dividers using phase–amplitude metasurfaces driven by Huygens principle”
(ACS Omega, 2019) – Cited 66 times.
“Programmable anisotropic digital metasurface for independent manipulation of dual-polarized THz waves based on a voltage-controlled phase transition of VO₂ microwires”
(Journal of Materials Chemistry C, 2020) – Cited 63 times.
“Reconfigurable honeycomb metamaterial absorber having incident angular stability”
(Scientific Reports, 2020) – Cited 44 times.
“A deep learning approach for inverse design of the metasurface for dual-polarized waves”
(Applied Physics A, 2021) – Cited 36 times.
“Real-time multi-functional near-infrared wave manipulation with a 3-bit liquid crystal-based coding metasurface”
(Optics Express, 2021) – Cited 30 times.
“Full Manipulation of the Power Intensity Pattern in a Large Space-Time Digital Metasurface: From Arbitrary Multibeam Generation to Harmonic Beam Steering Scheme”
(Annalen der Physik, 2020) – Cited 23 times.
“Implementation of conformal digital metasurfaces for THz polarimetric sensing”
(OSA Continuum, 2021) – Cited 22 times.
“Highly sensitive quarter-mode spoof localized plasmonic resonator for dual-detection RF microfluidic chemical sensor”
(Journal of Physics D: Applied Physics, 2020) – Cited 18 times.