First-author paper 'Pulse-to-Circuit Characterization of Stealthy Crosstalk Attack on Multi-Tenant Superconducting Quantum Hardware' accepted at ACM Quantum Security Workshop 2025 (arXiv:2509.11407), featured in Quantum Zeitgeist
Two first-author papers accepted at IEEE Quantum Week 2025: 'Testbed Protocol for Adaptive Superdense Coding in Distributed Quantum Networks' (arXiv:2504.12565) and 'Pulse-Level Simulation of Crosstalk Attacks on Superconducting Quantum Hardware' (arXiv:2507.16181)
Corresponding author of 'Secure and Efficient n-Qubit Entangled State Teleportation Using Partially Entangled GHZ Channels and Optimal POVM' published in AVS Quantum Science (Q1, IF=3.0)
First-author paper published in Heliyon (Q1, IF=3.6) in 2023 on fidelity improvement for encoded quantum Bell pairs
Co-supervised two papers published in Alexandria Engineering Journal (Q1, IF=6.8) and IET Quantum Communication (Q2, IF=2.8)
Awarded the NSF Student Travel Grant ($1,250) to present work at IEEE QCE 2025
Research Experience
Focuses on quantum hardware security vulnerabilities and robust quantum communication protocols
Conducts pulse-level simulations and characterizations of crosstalk attacks in multi-tenant superconducting quantum hardware
Develops detection mechanisms and mitigation strategies for stealthy vulnerabilities