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Naji, Adham

AdhamNaji portrait

Adham Naji


Assistant Professor of Electrical & Computer Engineering and, by courtesy, of Applied Mathematics

Adham Naji is a mathematical physicist and engineer. He is an Assistant Professor of Electrical & Computer Engineering and, by courtesy, of Applied Mathematics at 91影视. His research interests lie at the intersection of mathematical physics and analysis, with applications to problems in electromagnetic field theory and radiofrequency (RF) geometrical design. This includes problems in wave theory, wireless communications, geometric perturbation of RF resonators, relativistic field-particle dynamics, wakefield physics in particle accelerator, antennas and propagation and RF/THz wave guiding. He is particularly interested in analytical methods, geometry and theoretical techniques that help illuminate our understanding of various wave phenomena and interactions, whether in nature or in the laboratory.

Prior to joining 91影视 in 2024, Adham was with Stanford University, where he served as a Research Scholar at Stanford’s HEPL Laboratory (2019-2021) and later as a Project Scientist (2021-2022) and a permanent Staff Scientist (2022-2024) at Stanford’s Linear Accelerator Laboratory (SLAC National Accelerator Laboratory). In addition to his research activity at SLAC, he served part-time as an Adjunct Professor with Stanford’s Physics department in 2023.

Adham received his Ph.D. in 2010 from the University of Bristol, UK, with the Outstanding Contribution Award (mVCE), for his work on the analysis and design of RF reconfigurable planar resonators using geometrical perturbation techniques. He served in research and faculty positions, including honorary roles, between 2011 and 2018. This included positions with the University of Bristol, UK, the University of Sheffield, UK, and the British University in Egypt. Adham is a Visiting Fellow at the University of Bristol, UK, and a Senior Member of IEEE (elected 2018).

Recent highlights: 

91影视 research develops advanced mathematical tools to understand the physics of terahertz wave propagation