Dynamical decoupling for superconducting qubits: a performance survey
arXiv:2207.03670 · doi:10.1103/PhysRevApplied.20.064027
Abstract
Dynamical Decoupling (DD) is perhaps the simplest and least resource-intensive error suppression strategy for improving quantum computer performance. Here we report on a large-scale survey of the performance of 60 different DD sequences from 10 families, including basic as well as advanced sequences with high order error cancellation properties and built-in robustness. The survey is performed using three different superconducting-qubit IBMQ devices, with the goal of assessing the relative performance of the different sequences in the setting of arbitrary quantum state preservation. We find that the high-order universally robust (UR) and quadratic DD (QDD) sequences generally outperform all other sequences across devices and pulse interval settings. Surprisingly, we find that DD performance for basic sequences such as CPMG and XY4 can be made to nearly match that of UR and QDD by optimizing the pulse interval, with the optimal interval being substantially larger than the minimum interval possible on each device.
40 pages (15 main pages + 22 supplementary pages + 3 citation pages), 23 figures (5 main figures + 18 supplementary figures), 4 tables (2 main tables + 2 supplementary tables). Final submission (missing minor final proofing edits from published version)
References in corpus (20)
- Optimized Dynamical Decoupling in a Model Quantum Memory
- Fault-Tolerant Quantum Dynamical Decoupling
- How to Enhance Dephasing Time in Superconducting Qubits
- Decoherence-protected quantum gates for a hybrid solid-state spin register
- Exponential suppression of bit or phase flip errors with repetitive error correction
- Extending Quantum Coherence in Diamond
- Robust dynamical decoupling for quantum computing and quantum memory
- Arbitrarily accurate composite pulses
- Performance of Deterministic Dynamical Decoupling Schemes: Concatenated and Periodic Pulse Sequences
- Suppression of crosstalk in superconducting qubits using dynamical decoupling
- High fidelity quantum gates via dynamical decoupling
- Towards Fault Tolerant Adiabatic Quantum Computation
- Arbitrarily Accurate Pulse Sequences for Robust Dynamical Decoupling
- Comparison of dynamical decoupling protocols for a nitrogen-vacancy center in diamond
- Performance comparison of dynamical decoupling sequences for a qubit in a rapidly fluctuating spin-bath
- Experimental inhibition of decoherence on flying qubits via bang-bang control
- Protection of quantum systems by nested dynamical decoupling
- Rigorous Bounds on the Performance of a Hybrid Dynamical Decoupling-Quantum Computing Scheme
- Rigorous Bounds for Optimal Dynamical Decoupling
- Process tomography of Robust Dynamical Decoupling in Superconducting Qubits
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