Optimal pulse spacing for dynamical decoupling in the presence of a purely-dephasing spin-bath
arXiv:1011.6243 · doi:10.1103/PhysRevA.83.032303
Abstract
Maintaining quantum coherence is a crucial requirement for quantum computation; hence protecting quantum systems against their irreversible corruption due to environmental noise is an important open problem. Dynamical decoupling (DD) is an effective method for reducing decoherence with a low control overhead. It also plays an important role in quantum metrology, where for instance it is employed in multiparameter estimation. While a sequence of equidistant control pulses (CPMG) has been ubiquitously used for decoupling, Uhrig recently proposed that a non-equidistant pulse sequence (UDD) may enhance DD performance, especially for systems where the spectral density of the environment has a sharp frequency cutoff. On the other hand, equidistant sequences outperform UDD for soft cutoffs. The relative advantage provided by UDD for intermediate regimes is not clear. In this paper, we analyze the relative DD performance in this regime experimentally, using solid-state nuclear magnetic resonance. Our system-qubits are 13C nuclear spins and the environment consists of a 1H nuclear spin-bath whose spectral density is close to a normal (Gaussian) distribution. We find that in the presence of such a bath, the CPMG sequence outperforms the UDD sequence. An analogy between dynamical decoupling and interference effects in optics provides an intuitive explanation as to why the CPMG sequence performs superior to any non-equidistant DD sequence in the presence of this kind of environmental noise.
To be published in Phys. Rev. A. 15 pages, 16 figures. Presentation of the work was improved. One Figure and some Refs. were added
References in corpus (28)
- High-sensitivity diamond magnetometer with nanoscale resolution
- Universal dynamical decoupling of a single solid-state spin from a spin bath
- Optimized Dynamical Decoupling in a Model Quantum Memory
- Fault-Tolerant Quantum Dynamical Decoupling
- How to Enhance Dephasing Time in Superconducting Qubits
- Solid state quantum memory using the 31P nuclear spin
- Extending Quantum Coherence in Diamond
- Dynamical Decoupling of a single electron spin at room temperature
- Dynamically Error-Corrected Gates for Universal Quantum Computation
- Performance of Deterministic Dynamical Decoupling Schemes: Concatenated and Periodic Pulse Sequences
- Single-spin magnetometry with multi-pulse sensing sequences
- Optimal Dynamical Decoherence Control of a Qubit
- Universality of Uhrig dynamical decoupling for suppressing qubit pure dephasing and relaxation
- Exact Results on Dynamical Decoupling by -Pulses in Quantum Information Processes
- Preserving qubit coherence by dynamical decoupling
- From perfect to fractal transmission in spin chains
- Local observation of antibunching in a trapped Fermi gas
- Performance comparison of dynamical decoupling sequences for a qubit in a rapidly fluctuating spin-bath
- NMR quantum simulation of localization effects induced by decoherence
- Limits on Preserving Quantum Coherence using Multi-Pulse Control
- Quantum communication beyond the localization length in disordered spin chains
- Parameter Estimation with Mixed-State Quantum Computation
- Rigorous Bounds for Optimal Dynamical Decoupling
- Generating Unexpected Spin Echoes in Dipolar Solids with Pi Pulses
- The Intrinsic Origin of Spin Echoes in Dipolar Solids Generated by Strong Pi Pulses
- Controlling coherence using the internal structure of hard pi pulses
- Decoherence as attenuation of mesoscopic echoes in a spin-chain channel
- Dynamical decoupling for a qubit in telegraph-like noises
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- Robust dynamical decoupling for quantum computing and quantum memory
- Direct Measurement of the System-Environment Coupling as a Tool For Understanding Decoherence and Dynamical Decoupling
- Single-Spin Spectrum-Analyzer for a Strongly Coupled Environment
- Experimental protection of quantum gates against decoherence and control errors
- Concatenated dynamical decoupling with virtual pulses
- No-go theorem and optimization of dynamical decoupling against noise with soft cutoff
- Uhrig Dynamical Control of a Three-Level System Via Non-Markovian Quantum State Diffusion
- Nuclear Spins as Quantum Testbeds: Singlet States, Quantum Correlations, and Delayed-choice Experiments