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Resource-efficient digital characterization and control of classical non-Gaussian noise

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abstract

We show the usefulness of frame-based characterization and control [PRX Quantum 2, 030315 (2021)] for non-Markovian open quantum systems subject to classical non-Gaussian dephasing. By focusing on the paradigmatic case of random telegraph noise and working in a digital window frame, we demonstrate how to achieve higher-order control-adapted spectral estimation for noise-optimized dynamical decoupling design. We find that, depending on the operating parameter regime, control that is optimized based on non-Gaussian noise spectroscopy can substantially outperform standard Walsh decoupling sequences as well as sequences that are optimized based solely on Gaussian noise spectroscopy. This approach is also intrinsically more resource-efficient than frequency-domain comb-based methods.

fields

quant-ph 1

years

2025 1

verdicts

CONDITIONAL 1

representative citing papers

Non-Gaussian Noise Magnetometry Using Local Spin Qubits

quant-ph · 2025-05-06 · conditional · novelty 6.0

A single NV spin qubit and two-qubit coincidence or Bell-state echoes can isolate fourth-order magnetic noise cumulants, demonstrated on telegraph-noise and critical Ising models.

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  • Non-Gaussian Noise Magnetometry Using Local Spin Qubits quant-ph · 2025-05-06 · conditional · none · ref 60 · internal anchor

    A single NV spin qubit and two-qubit coincidence or Bell-state echoes can isolate fourth-order magnetic noise cumulants, demonstrated on telegraph-noise and critical Ising models.