An adiabatic protocol for quantum phase estimation that reaches optimal scaling T = O(1/ε log(1/δ)) by encoding eigenvalues in computational basis populations rather than phases.
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An optimized adiabatic-impulse protocol reduces total time for crossing quantum critical points while preserving Kibble-Zurek scaling and attenuating noise-induced anti-Kibble-Zurek defects in the transverse Ising chain.
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Adiabatic Quantum Phase Estimation
An adiabatic protocol for quantum phase estimation that reaches optimal scaling T = O(1/ε log(1/δ)) by encoding eigenvalues in computational basis populations rather than phases.
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Optimized adiabatic-impulse protocol preserving Kibble-Zurek scaling with attenuated anti-Kibble-Zurek behavior
An optimized adiabatic-impulse protocol reduces total time for crossing quantum critical points while preserving Kibble-Zurek scaling and attenuating noise-induced anti-Kibble-Zurek defects in the transverse Ising chain.