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quant-ph2026★ 101 cited
A unified framework for magic state distillation and multi-qubit gate-synthesis with reduced resource cost
Earl T. Campbell, Mark Howard
The standard approach to fault-tolerant quantum computation is to store information in a quantum error correction code, such as the surface code, and process information using a st…
quant-ph2026★ 12 cited
Mind the gap: Achieving a super-Grover quantum speedup by jumping to the end
Alexander M. Dalzell, Nicola Pancotti, Earl T. Campbell +1
We present a quantum algorithm that has rigorous runtime guarantees for several families of binary optimization problems, including Quadratic Unconstrained Binary Optimization (QUB…
quant-ph2024
Early fault-tolerant simulations of the Hubbard model
Earl T. Campbell
Simulation of the Hubbard model is a leading candidate for the first useful applications of a fault-tolerant quantum computer. A recent study of quantum algorithms for early simula…