Quadratic Dynamical Decoupling with Non-Uniform Error Suppression
arXiv:1105.4303 · doi:10.1103/PhysRevA.84.042328
Abstract
We analyze numerically the performance of the near-optimal quadratic dynamical decoupling (QDD) single-qubit decoherence errors suppression method [J. West et al., Phys. Rev. Lett. 104, 130501 (2010)]. The QDD sequence is formed by nesting two optimal Uhrig dynamical decoupling sequences for two orthogonal axes, comprising N1 and N2 pulses, respectively. Varying these numbers, we study the decoherence suppression properties of QDD directly by isolating the errors associated with each system basis operator present in the system-bath interaction Hamiltonian. Each individual error scales with the lowest order of the Dyson series, therefore immediately yielding the order of decoherence suppression. We show that the error suppression properties of QDD are dependent upon the parities of N1 and N2, and near-optimal performance is achieved for general single-qubit interactions when N1=N2.
17 pages, 22 figures
References in corpus (20)
- Quantum Computing
- Fault-Tolerant Quantum Dynamical Decoupling
- Performance of Deterministic Dynamical Decoupling Schemes: Concatenated and Periodic Pulse Sequences
- Optimal Dynamical Decoherence Control of a Qubit
- Universality of Uhrig dynamical decoupling for suppressing qubit pure dephasing and relaxation
- High fidelity quantum gates via dynamical decoupling
- Optimal pulse spacing for dynamical decoupling in the presence of a purely-dephasing spin-bath
- Performance comparison of dynamical decoupling sequences for a qubit in a rapidly fluctuating spin-bath
- Local observation of antibunching in a trapped Fermi gas
- Concatenated Control Sequences based on Optimized Dynamic Decoupling
- Concatenated dynamical decoupling in a solid-state spin bath
- Protection of quantum systems by nested dynamical decoupling
- Long-time electron spin storage via dynamical suppression of hyperfine-induced decoherence in a quantum dot
- Dynamical control of electron spin coherence in a quantum dot
- Rigorous Bounds on the Performance of a Hybrid Dynamical Decoupling-Quantum Computing Scheme
- Limits on Preserving Quantum Coherence using Multi-Pulse Control
- Protecting unknown two-qubit entangled states by nesting Uhrig's dynamical decoupling sequences
- Rigorous Bounds for Optimal Dynamical Decoupling
- Quadratic Dynamical Decoupling: Universality Proof and Error Analysis
- Extending quantum control of time-independent systems to time-dependent systems
Cited by in corpus (13)
- Robust dynamical decoupling
- Dynamical decoupling for superconducting qubits: a performance survey
- Demonstration of quantum volume 64 on a superconducting quantum computing system
- Quadratic Dynamical Decoupling: Universality Proof and Error Analysis
- Optimized Dynamical Decoupling via Genetic Algorithms
- High Fidelity Adiabatic Quantum Computation via Dynamical Decoupling
- Concatenated dynamical decoupling with virtual pulses
- Universality proof and analysis of generalized nested Uhrig dynamical decoupling
- Rigorous Performance Bounds for Quadratic and Nested Dynamical Decoupling
- No-go theorem and optimization of dynamical decoupling against noise with soft cutoff
- Efficacy of noisy dynamical decoupling
- Dynamical Decoupling in Common Environment
- Error Mitigation in Quantum Computers through Instruction Scheduling