RF & Microwave Solid-State Devices
Technology of RF and microwave solid-state device design.
Education
MS(Research) at IIT Delhi · B.Tech (EEE) at SASTRA · specialized training in VLSI, quantum computing, and instrumentation.
Graduate
July 2024 – present (expected June 2026) · CGPA 8.6/10 · Supervisor: Prof. Santanu Manna
Technology of RF and microwave solid-state device design.
EM radiation–matter interaction, lasers, quantum optical devices.
Device physics fundamentals for modern semiconductor technologies.
Photon statistics, coherence, entanglement, cavity QED.
Hands-on cleanroom fabrication — lithography to characterization.
Advanced RF device technology topics.
Waveguides, photonic integrated circuits, modulators, and detectors on silicon photonics platforms.
Undergraduate
2017 – 2021 · Tamil Nadu · CGPA 8.225/10 · Bachelor thesis on quantum random number generation.
Digital logic design · analog/digital ICs · VLSI systems · microprocessors · embedded systems.
Power electronics · electric drives · control systems · power systems analysis · renewables.
Signals & systems · communication engineering · DSP · wireless · optical communication.
Engineering mathematics · probability & random processes · electromagnetic theory · quantum mechanics.
C · Python · MATLAB/Simulink · data structures & algorithms · ML fundamentals.
Quantum computing · nanotechnology · IoT & smart systems · research methodology.
Earlier
State Board of Intermediate Education · 98.0% · top performer in Physics and Mathematics; district-level science exhibition participant.
SSC board · CGPA 9.8/10 · school topper with distinction in all subjects and academic excellence awards.
Credentials
Active member of the global quantum computing community: algorithm contributions, educational outreach, and open-source engagement across the Qiskit ecosystem.
Transmon geometry bounds on single-shot readout fidelity — Qiskit Metal, LOM, pyEPR, and QuTiP; released an open-source analysis tool.
Superconducting qubit design in Keysight ADS QuantumPro with EPR analysis; silicon photonic filter design with fabrication-ready GDS layout.
Nanomaterial/nanodevice modeling with RESCU (DFT+DFPT), NanoDcal (DFT+NEGF), and QTCAD Poisson–Schrödinger solvers.
Skills