Robustness of Quantum-Enhanced Adaptive Phase Estimation

September 14, 2018 Β· Declared Dead Β· πŸ› Physical Review A

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Authors Pantita Palittapongarnpim, Barry C. Sanders arXiv ID 1809.05525 Category quant-ph: Quantum Computing Cross-listed cs.LG, eess.SY, stat.ML Citations 16 Venue Physical Review A Last Checked 5 months ago
Abstract
As all physical adaptive quantum-enhanced metrology schemes operate under noisy conditions with only partially understood noise characteristics, so a practical control policy must be robust even for unknown noise. We aim to devise a test to evaluate the robustness of AQEM policies and assess the resource used by the policies. The robustness test is performed on QEAPE by simulating the scheme under four phase-noise models corresponding to normal-distribution noise, random-telegraph noise, skew-normal-distribution noise, and log-normal-distribution noise. Control policies are devised either by an evolutionary algorithm under the same noisy conditions, albeit ignorant of its properties, or a Bayesian-based feedback method that assumes no noise. Our robustness test and resource comparison method can be used to determining the efficacy and selecting a suitable policy.
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