J. William Helton

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3ranked-venue papers
2as first author
1since 2021 · last 2026
0000-0002-7716-3903ORCID · corroborated

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Theory of computation · 3 · 2 first-author · 1 since 2021
YearPublicationVenuePosition
2026 Quantum Precomputation: Parallelizing Cascade Circuits and the Moore-Nilsson Conjecture Is False
abstract
Parallelization is a major challenge in quantum algorithms due to physical constraints like no-cloning. This is vividly illustrated by the conjecture of Moore and Nilsson from their seminal work on quantum circuit complexity: unitaries of a deceptively simple form—controlled-unitary “staircases”—require circuits of minimum depth Ω(n). If true, this lower bound would represent a significant break from classical parallelism and prove a quantum-native analogue of the famous NC≠ P conjecture.
Adam Bene Watts, Charles R. Chen, J. William Helton, Joseph Slote
STOC3
1988 Correction: Vandermonde and Resultant Matrices: An Abstract Approach
J. William Helton, Leiba Rodman
Math. Syst. Theory1
1987 Vandermonde and Resultant Matrices: An Abstract Approach
J. William Helton, Leiba Rodman
Math. Syst. Theory1