1 citations · 2 across the 6 of their papers we have counts for
6 papers
Automated Quantum Circuit Generation for Computing Inverse Hash Functions
Elena R. Henderson, Jessie M. Henderson, William V. Oxford +1
Several cryptographic systems depend upon the computational difficulty of reversing cryptographic hash functions. Robust hash functions transform inputs to outputs in such a way th…
Designing a Photonic Physically Unclonable Function Having Resilience to Machine Learning Attacks
Elena R. Henderson, Jessie M. Henderson, Hiva Shahoei +4
Physically unclonable functions (PUFs) are designed to act as device 'fingerprints.' Given an input challenge, the PUF circuit should produce an unpredictable response for use in s…
A Photonic Physically Unclonable Function's Resilience to Multiple-Valued Machine Learning Attacks
Jessie M. Henderson, Elena R. Henderson, Clayton A. Harper +5
Physically unclonable functions (PUFs) identify integrated circuits using nonlinearly-related challenge-response pairs (CRPs). Ideally, the relationship between challenges and corr…
Exploring Non-Linear Programming Formulations in QuantumCircuitOpt for Optimal Circuit Design
Elena R. Henderson, Harsha Nagarajan, Carleton Coffrin
Given the limitations of current hardware, the theoretical gains promised by quantum computing remain unrealized across practical applications. But the gap between theory and hardw…
A Programmable True Random Number Generator Using Commercial Quantum Computers
Aviraj Sinha, Elena R. Henderson, Jessie M. Henderson +2
Random number generators (RNG) are essential elements in many cryptographic systems. True random number generators (TRNG) rely upon sources of randomness from natural processes suc…
Automated Quantum Oracle Synthesis with a Minimal Number of Qubits
Jessie M. Henderson, Elena R. Henderson, Aviraj Sinha +2
Several prominent quantum computing algorithms--including Grover's search algorithm and Shor's algorithm for finding the prime factorization of an integer--employ subcircuits terme…