Dr. Asha verma

Dr. Asha Verma
Assistant Professor-Dept. of Electronics & Communication Engg.
Expertise-Reconf. Metamaterials for Next-Gen. Wireless & Stealth Tech.
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Assistant Professor
Department of Electronics and Communication Engineering – Avionics
Rajiv Gandhi National Aviation University (RGNAU), Fursatganj, Amethi, Uttar Pradesh, India

Dr. Asha Verma is currently serving as an Assistant Professor in the Department of Electronics and Communication Engineering – Avionics at Rajiv Gandhi National Aviation University (RGNAU), Fursatganj, Amethi, Uttar Pradesh.

Dr. Verma has significant research experience in the design, simulation, and experimental validation of reconfigurable metamaterial absorbers, with an emphasis on tunability, polarization insensitivity, and broadband behavior across microwave to terahertz frequencies. Her current research focuses on the development of advanced electromagnetic structures for applications in 5G/6G communications, wireless systems, avionics, and stealth technology

Dr. Verma is keen on interdisciplinary collaborations, especially those involving stealth systems, absorber technologies, and next-generation aerospace communication platforms.


Educational Qualifications

Degree

Year

Institution

Ph.D.

2024

Maulana Azad National Institute of Technology (MANIT), Bhopal       

M.Tech

2017

National Institute of Technology (NIT), Durgapur

B.Tech

2014

Kamla Nehru Institute of Technology (KNIT), Sultanpur

Experience

2025 – Till Date      Assistant Professor, Rajiv Gandhi National Aviation University (RGNAU), Amethi

2024 – 2025          Assistant Professor, Pranveer Singh Institute of Technology (PSIT), Kanpur

2017 – 2019           Faculty, Bundelkhand Institute of Engineering and Technology, Jhansi.


Research Interest

  • Metamaterial Absorbers
  • Reconfigurable EM Devices
  • Graphene-Based THz Components
  • Stealth and Aerospace Applications
  • 5G/6G Communication Systems
  • EM Simulation and Fabrication

Journal Publications

  1. A. Verma, O. Meena (2024), “Design and Investigation on Polarization Insensitive Dual Band Graphene Based Tunable Absorber for THz Applications”, Physica Scripta (SCIE, Q2), Vol. 99(2).
    https://doi.org/10.1088/1402-4896/ad1904

  2. A. Verma, O. Meena (2023), “Design and Analysis of a Compact Ultrathin Penta-band Metamaterial Absorber”, Sādhanā – Academy Proceedings in Engineering Sciences (SCIE, Q2), Vol. 48(4).
    https://doi.org/10.1007/s12046-023-02352-4

  3. A. Verma, Mamta Sood, Neha Shukla, Payal Koolwal, Vijeta Yadav (2024), “Frequency Tunable Dual Band Graphene-Silicon-Ceramic Based Two-Port THz Radiator with Circular Polarization and High-Resolution Features”, Applied Optics (SCIE, Q2), Vol. 63(17).
    https://doi.org/10.1364/AO.524594

  4. A. Verma, O. Meena, “Dual-Band Polarization Insensitive Graphene-Based Reconfigurable Absorber in a Terahertz Regime”, Applied Optics (SCIE, Q2), Vol. 63(8).
    https://doi.org/10.1364/AO.513884

  5. S. Kumar, A. Kumar, S. Gautam, A. Verma (2023), “Emulsification of Indian Heavy Crude Oil and Analysis of Flow Characteristics Using Computational Fluid Dynamics (CFD) for Pipeline Transportation”, Journal of Dispersion Science and Technology (SCI, Q3), Vol. 45(11).
    https://doi.org/10.1080/01932691.2023.2256384

  6. Communicated:
    M. Sood, A. Verma, V. Yadav, “Efficient Modelling of Graphene Built 2-Port Band-Notched Antenna in THz Spectrum Using ML Algorithm”, submitted to Journal of Electronic Materials.


Patents (Filed)

  1. “Metamaterials Absorption Sheet for Electric Vehicles”, Application No. 448023-001, CBR Date: 13/02/2025

  2. “AI-Based Device for Fault Detection in Digital Circuit”, Application No. 461737-001, CBR Date: 10/06/2025


Conference Presentations

  1. A. Verma, O. Meena (2024), “Perfect Metamaterial Absorber for K-band Application”, IEEE International Students' Conference on Electrical, Electronics and Computer Science (SCEECS), Bhopal, India.
    https://doi.org/10.1109/SCEECS61402.2024.10482334

  2. A. Verma, O. Meena (2023), “An Ultra-thin, Compact, Dual-band Metamaterial Absorber”, IEEE Renewable Energy and Sustainable E-Mobility Conference (RESEM), Bhopal, India.
    https://doi.org/10.1109/RESEM57584.2023.10236252

  3. A. Verma, O. Meena (2023), “A Review of Metamaterial Absorber and Its Absorption Techniques”, IEEE International Students' Conference on Electrical, Electronics and Computer Science (SCEECS), Bhopal, India.
    https://doi.org/10.1109/SCEECS57921.2023.10062996