Dr. Pratik Ghosh

Dr. Pratik Ghosh

Designation: Assistant Professor

Biography:

Dr. Pratik Ghosh has completed his Ph.D. in Computational Sciences, from DA-IICT (currently DAU), Gandhinagar, specializing in modelling and simulation of microwave-interaction with low temperature gaseous plasmas (LTPs). Prior to joining ADANI University, he has served as a Postdoctoral Fellow in Plasma Diagnostic division at Institute for Plasma Research, Gandhinagar working in modelling and simulation of plasma diagnostics. He holds M.Tech. in Electronics and Communications Engineering from Lovely Professional University, Punjab and B.Tech. in Electronics and Communications Engineering from ICFAI University, Dehradun. He has published multiple research articles both in peer-reviewed reputed journals as well as at international conferences. He brings with him years of research experience both at doctoral and postdoctoral level, which can be beneficial for conducting future research and teaching scientific computing both in ICT and CS courses.

  • SSC: Sacred Heart High School, Kharagpur, ICSE, Subjects: Bengali, English, Math, Science, History Civics and Geography and Computer, Passing year: 2006
  • HSC: Kendriya Vidyalaya-2, Kharagpur, CBSE, Subjects: English, Math, Physics, Chemistry and Computer Applications, Passing year: 2008
  • B.Tech.: ICFAI University, Dehradun in Electronics and Communication Engineering, Passing year: 2012
  • M.Tech.: Lovely Professional University Punjab in Electronics and Communication Engineering, Specialization in VLSI engineering, Passing year: 2016
  • Ph.D.: Dhirubhai Ambani University (formerly DA-IICT) Gandhinagar, Topic: Computational and Data-Driven Approaches for Investigation of Microwave-Plasma Interaction

  • Postdoctoral Fellow at Institute for Plasma Research Gandhinagar, Gujarat, start date: 01-04-2024 and end date: 15-07-2026

  • Computational Electromagnetics, Computational Plasma Physics, Microwave-Plasma interaction
  • Tools known: COMSOL Multiphysics (AC/DC, RF and Microwave, plasma module) and Python framework for AI/ML.

  1. K. Pandya, P. Ghosh, A. Mandikal, S. Gandha and B. Chaudhury, Physics guided Fourier Neural Operator framework for accelerated simulation of high-power microwave breakdown, Engineering Applications of Artificial Intelligence, volume 167, part 2, 2026
  2. P. Ghosh, B. Chaudhury, S. Purohit, V. Joshi, A. Kothari and D. Shetranjiwala, Deep Learning assisted microwave-plasma interaction-based technique for plasma density estimation, Journal of Physics D: Applied Physics, volume 57, Oct 2023.
  3. P. Ghosh and Bhaskar Chaudhury, Efficient Dynamic Mesh Refinement Technique for Simulation of HPM Breakdown-Induced Plasma Pattern Formation. IEEE Transactions on Plasma Science, volume 51, pages 66–76, 2023
  4. M. Desai, P. Ghosh, A. Kumar, and B. Chaudhury, Deep-Learning Architecture-Based Approach for 2-D-Simulation of Microwave Plasma Interaction. IEEE Transactions on Microwave Theory and Techniques, volume 70, pages 5359–5368, 2022

  1. P. Ghosh, S. Purohit, M. K. Gupta, Design and Simulation of 500 MHz Microwave-Induced Argon Plasma in Waveguide-Fed Cylindrical Cavities. In 2025 IEEE Microwaves, Antennas, and Propagation Conference (MAPCON), pages, 1-4, Kochi, India, 2025.
  2. P. Ghosh, B. Chaudhury, S. Purohit, Efficient Data-Driven Simulation of Microwave Interaction with Complex Plasma Profiles. In 2024 IEEE Microwaves, Antennas, and Propagation Conference (MAPCON), pages, 1-5, Hyderabad, India, 2024.
  3. P. Ghosh and B. Chaudhury, Investigation of Microwave Induced Local Gas Heating in HPM Switching and Protection Using Two-dimensional Computations. In 2022 IEEE Microwaves, Antennas, and Propagation Conference (MAPCON), pages 404–409, Bangalore, India, 2022.
  4. P. Ghosh and B. Chaudhury, Computational Investigation of Microwave Breakdown in HPM Switching and Protection. In 2021 IEEE MTT-S International Microwave and RF Conference (IMARC), pages 1–4, Kanpur, India, 2021.
  5. P. Ghosh and B. Chaudhury, Mesh Refinement Based Simulation of Complex Plasma Dynamics during High Power Millimeter Wave Breakdown. In 2020 IEEE MTT-S International Conference on Numerical Electromagnetic and Multiphysics Modeling and Optimization (NEMO), pages 1–4, Hangzhou, China, 2020.
  6. V. Katkoria, P. Ghosh and B. Chaudhury, GPU accelerated FDTD based Open- source SAR Simulator. In 2019 IEEE MTT-S International Microwave and RF Conference (IMARC), pages 1–5, Bombay, India, 2019.

  1. Applied Machine Learning with Python & Analytics, Conducted by: iHUB Divyasampark IIT Roorkee & RBPL, From: 27-03-2025, To: 15-08-2025, Subjects: Python, Pandas, plotting, Machine Learning basics. Obtained: 70% in Course completion test.
  2. 1-week STC on “Microwave and beyond: Present and Futuristic Wireless Communication Systems”, Conducted by: Dept. of Electronics and Telecommunication Engineering, Kalimpong Government Polytechnic, West Bengal, From: 03-04-2022, To:07-04-2022, Subjects: Microwave, Transmission lines, Satellite Communication. Obtained: Passed the Quiz for course completion.

  • Awarded Session Chair for chairing technical session “THz Components and Systems (Part2)” At IEEE MAPCON 2024, Hyderabad
  • Student Travel Grant as Full- Registration Fee Waiver -ICOPS 2022, USA (virtual mode) IEEE Conference on Plasma Science and Technology (ICOPS)
  • Student Travel Grant – MAPCON 2022, Bengaluru, for oral presentation of a conference paper.
  • Student Travel Grant – 2019 IEEE Microwaves and Radio Frequency (IMaRC)
  • Second Position – PhD Initiative IMaRC 2019