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  • Home
  • About Us
    • Our Team
    • Selected Publications
    • The Lab
  • Research
  • Teaching & Outreach
  • Opportunities
  • Contact

Selected Publications

  • K. S. Kabir, K. Singhal, and A. Semnani, “Capacitive-tuned SIW evanescent-mode cavity for resonant microwave plasma jet,” IEEE Transactions on Microwave Theory and Techniques,  2025.

  • M. R. Akram and A. Semnani, “Non-radiating resonances: anapoles enabling highly-efficient plasma jets within dielectric structures,” IEEE Transactions on Microwave Theory and Techniques, vol. 73, no. 1, pp. 352-360, January 2025.

  • S. N. Ramesh and A. Semnani, “A plasma-loaded resonator for integrated filter-limiter applications,” IEEE Transactions on Microwave Theory and Techniques, vol. 72, no. 12, pp. 6933-6942, December 2024.

  • M. R. Akram and A. Semnani, “A microwave anapole source based on electric dipole
    interactions over a low-index dielectric,” Physical Review Applied, 21, 054051, 2024.

  • N. Ramesh and A. Semnani, “Theory and design of frequency-selective absorptive microwave plasma limiters,” IEEE Transactions on Microwave Theory and Techniques, vol. 72, no. 2, pp. 1225-1233, February 2024.

  • A. Semnani and K. S. Kabir, “A highly-efficient microwave plasma jet based on evanescent-mode cavity-resonator technology,” IEEE Transactions on Plasma Science, vol. 50, no. 10, pp. 3516-3524, October 2022.

  • N. Ramesh and A. Semnani, “A comprehensive circuit modeling approach for self-sustained capacitively-coupled microwave plasmas,” IEEE Transactions on Plasma Science, vol. 49, no. 9, pp. 2690-2699, September 2021.

  • Semnani, B. Baskaran, and D. Peroulis, “Microwave wireless powering of sensored agricultural tiles,” IEEE Transactions on Antennas and Propagation, vol. 69, no. 5, pp. 2913-2920, May 2021.

  • An, Z. Yin, C. Mitchell, A. Semnani, A. R. Hajrasouliha, and M. Hosseini, “Nanodiamond ensemble-based temperature measurement in living cells and its limitations,” Measurement Science and Technology, 32, 015701, 2021.

  • Vander Missen, A. Semnani, and D. Peroulis, “Plasma-based power limitation for highly linear MEMS switch protection and isolation enhancement,” IEEE Access, vol. 8, pp. 173103-173111, 2020.

  • Podolsky, A. Semnani, and S. O. Macheret, “Experimental and numerical studies of a tunable plasma antenna sustained by RF power,” IEEE Transactions on Plasma Science, vol. 48, no. 10, pp. 3524-3534, October 2020.

  • Dockendorf, A. Egbert, E. Langley, C. Calabrese, J. Alcala-Medel, S. Rezayat, Z. Hays, C. Baylis, A. Martone, E. Viveiros, K. Gallagher, A. Semnani, and D. Peroulis, “Fast optimization algorithm for evanescent-mode cavity tuner optimization and timing reduction in software-defined radar implementation,” IEEE Transactions on Aerospace and Electronic Systems, vol. 56, no. 4, pp. 2762-2778, August 2020.

  • Semnani, G. S. Shaffer, Y.-C. Wu, and D. Peroulis, “High-power impedance tuner utilizing substrate-integrated evanescent-mode cavity technology and external linear actuators,” IET Microwaves, Antennas and Propagation, vol. 13, no. 12, pp. 2067-2072, October 2019.

  • Semnani, M. D. Sinanis, and D. Peroulis, “An evanescent-mode cavity-backed high-power tunable slot antenna,” IEEE Transactions on Antennas and Propagation, vol. 67, no. 6, pp. 3712-3719, June 2019.

  • Semnani, S. Macheret, and D. Peroulis, “A quasi-absorptive microwave resonant plasma switch for high-power applications,” IEEE Transactions on Microwave Theory and Techniques, vol. 66, no. 8, pp. 3798-3806, August 2018.

  • Qu, P. Tian, A. Semnani, M. J. Kushner, “Properties of arrays of microplasmas: application to control of electromagnetic waves,” Plasma Sources Science and Technology, vol. 26, no. 10, 105006, 2017.

  • Semnani, M. A. Khater, Y. C. Wu, and D. Peroulis, “An electronically-tunable high-power impedance tuner with integrated closed-loop control,” IEEE Microwave and Wireless Components Letters, vol. 27, no. 8, pp. 754-756, August 2017.

  • Semnani, S. Macheret, and D. Peroulis, “A high-power widely-tunable limiter utilizing an evanescent-mode cavity resonator loaded with a gas discharge tube,” IEEE Transactions on Plasma Science, vol. 44, no. 12, pp. 3271-3280, December 2016.

  • Semnani, D. Peroulis, and S. Macheret, “Plasma-enabled tuning of a resonant RF circuit,” IEEE Transactions on Plasma Science, vol. 44, no. 8, pp. 1396-1404, August 2016.

  • Tholeti, A. Semnani, D. Peroulis, and A. Alexeenko, “Dark-to-arc transition in field emission dominated atmospheric microdischarges,” Physics of Plasmas, 22, 083508, 2015.

  • Semnani and D. Peroulis, “Contribution of ions in radio frequency properties of atmospheric pressure microgaps,” Applied Physics Letters, 105, 253105, 2014.

  • Semnani and D. Peroulis, “Evaluation of RF micro-discharge regimes in the performance of evanescent-mode cavity resonators,” IET Electronics Letters, vol. 50, no. 17, pp. 1244-1246, August 2014.

  • Ebadi and A. Semnani, “Mutual coupling reduction in waveguide slot array antennas using electromagnetic band-gap (EBG) structures,” IEEE Antennas and Propagation Magazine, vol. 56, no. 3, pp. 68-79, June 2014.

  • Semnani, K. Chen, and D. Peroulis, “Microwave gas breakdown in tunable evanescent-mode cavity resonators,” IEEE Microwave and Wireless Components Letters, vol. 24, no. 5, pp. 351-353, May 2014.

  • Semnani, A. Venkattraman, A. Alexeenko, and D. Peroulis, “Frequency response of atmospheric pressure gas breakdown in micro/nanogap,” Applied Physics Letters, 103, 063102, 2013.

  • Semnani, A. Venkattraman, A. Alexeenko, and D. Peroulis, “Pre-breakdown evaluation of gas discharge mechanisms in microgaps,” Applied Physics Letters, 102, 174102, 2013.

  • Oloumi, S. Ebadi, A. Kordzadeh, A. Semnani, P. Mousavi, and X. Gong, “Miniaturized reflectarray unit cell using fractal-shaped patch-slot configuration,” IEEE Antennas and Wireless Propagation Letters, vol. 11, pp. 10-13, 2012.

  • Semnani, I. T. Rekanos, M. Kamyab, and M. Moghaddam, “Solving inverse scattering problems based on truncated cosine Fourier and cubic B-spline expansions,” IEEE Transactions on Antennas and Propagation, vol. 60, no. 12, pp. 5914-5923, Dec. 2012.

  • Semnani, I. T. Rekanos, M. Kamyab, and T. G. Papadopoulos, “Two-dimensional microwave imaging based on hybrid scatterer representation and differential evolution,” IEEE Transactions on Antennas and Propagation, vol. 58, no. 10, pp. 3289-3298, Oct. 2010.

  • Semnani, M. Kamyab, and I. T. Rekanos, “Reconstruction of one-dimensional dielectric scatterers using differential evolution and particle swarm optimization,” IEEE Geoscience and Remote Sensing Letters, vol. 6, no. 4, pp. 671-675, Oct. 2009.

  • Semnani and M. Kamyab, “An enhanced hybrid method for solving inverse scattering problems,” IEEE Transactions on Magnetics, vol. 45, no. 3, pp. 1534-1537, March 2009.

  • Semnani and M. Kamyab, “Truncated cosine Fourier series expansion method for solving 2-D inverse scattering problems,” Progress In Electromagnetics Research, vol. 81, pp. 73–97, 2008.

  • Semnani and M. Kamyab, “An Enhanced Method for Inverse Scattering Problems using Fourier Series Expansion in Conjunction with FDTD and PSO,” Progress In Electromagnetics Research, vol. 76, pp. 45-64, 2007.

  • Mahmoudi, A. Semnani, R. Alizadeh, and R. Adeli, “Negative refraction of a three-dimensional metallic photonic crystal,” European Physical Journal Applied Physics, vol. 39, pp. 27-32, 2007.

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