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Phase-cycled randomized benchmarking of quantum processors: recovering hidden classical noise correlations
Randomized benchmarking can hide classical temporal correlations because its Clifford-twirled response is even in the noise phase. For a stationary symmetric telegraph fluctuator, we show that continuous evolution and independent stationary resets at slot boundaries yield identical mean responses for arbitrary fixed idle modulations. We construct an eight-setting phase-cycle measurement of the connected sine-phase covariance under ideal Clifford twirling and classical idle dephasing. This observable vanishes for independent slot noise and fixed detuning without a weak-phase or Gaussian approxi
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Evidence & attribution
- arXiv · AI, language, vision and robotics · 2026-09-06T07:48:16.000Z
First collected: 2026-09-20T21:12:06.801Z. This is not the publication date.