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quant-ph2026

A digitally controlled silicon quantum processing unit

Members of the HRL Quantum Team, Collaborators, : +256

Commercially-relevant quantum computers will require large numbers of high-performing qubits that can be manufactured, integrated, and controlled at scale. Silicon exchange-only (E…

quant-ph2025

QB Ground State Energy Estimation Benchmark

Nicole Bellonzi, Joshua T. Cantin, Mohammad Reza Jangrouei +14

Ground State Energy Estimation (GSEE) is a central problem in quantum chemistry and condensed matter physics, demanding efficient algorithms to solve complex electronic structure c…

quant-ph2025

Quantum computing for corrosion-resistant materials and anti-corrosive coatings design

Nam Nguyen, Thomas W. Watts, Benjamin Link +14

Corrosion is a pervasive issue that impacts the structural integrity and performance of materials across various industries, imposing a significant economic impact globally. In fie…

quant-ph2024

Prospects for Quantum Computation in Propellant Design: Assessing the Stability of Cyclic Ozone in Nanoscale Confinement

Thomas W. Watts, Matthew Otten, Jason T. Necaise +14

Cyclic ozone additives have the potential to markedly increase the specific impulse of rocket fuel. This would translate to greater efficiency and reduced costs for space lift by g…

quant-ph2024

Quantum Resources Required for Binding Affinity Calculations of Amyloid beta

Matthew Otten, Thomas W. Watts, Samuel D. Johnson +7

Amyloid beta, an intrinsically disordered protein, plays a seemingly important but not well-understood role in neurodegenerative diseases like Alzheimer's disease. A key feature of…