Decoherence and dynamical decoupling control of nitrogen-vacancy center electron spins in nuclear spin baths
arXiv:1108.2343 · doi:10.1103/PhysRevB.85.115303
Abstract
We theoretically study the decoherence and the dynamical decoupling control of nitrogen-vacancy center electron spins in high-purity diamond, where the hyperfine interaction with C nuclear spins is the dominating decoherence mechanism. The decoherence is formulated as the entanglement between the electron spin and the nuclear spins, which is induced by nuclear spin bath evolution conditioned on the electron spin state. The nuclear spin bath evolution is driven by elementary processes such as single spin precession and pairwise flip-flops. The importance of different elementary processes in the decoherence depends on the strength of the external magnetic field.
18 pages, 17 figures
References in corpus (21)
- High-sensitivity diamond magnetometer with nanoscale resolution
- Sensing electric fields using single diamond spins
- Universal dynamical decoupling of a single solid-state spin from a spin bath
- Fault-Tolerant Quantum Dynamical Decoupling
- Extending Quantum Coherence in Diamond
- Coherence of Nitrogen-Vacancy Electronic Spin Ensembles in Diamond
- Theory of electron spin decoherence by interacting nuclear spins in a quantum dot
- Quenching Spin Decoherence in Diamond through Spin Bath Polarization
- Dynamical Decoupling of a single electron spin at room temperature
- Performance of Deterministic Dynamical Decoupling Schemes: Concatenated and Periodic Pulse Sequences
- Quantum many-body theory of qubit decoherence in a finite-size spin bath
- Single-spin magnetometry with multi-pulse sensing sequences
- Electron spin decoherence of single Nitrogen-Vacancy defects in diamond
- Nuclear spin pair coherence in diamond for atomic scale magnetometry
- Restoring Coherence Lost to a Slow Interacting Mesoscopic Bath
- Electron spin decoherence in isotope-enriched silicon
- Preserving qubit coherence by dynamical decoupling
- Quantum many-body theory of qubit decoherence in a finite-size spin bath. II. Ensemble dynamics
- Observation of anomalous decoherence effect in a quantum bath at room temperature
- Anomalous decoherence effect in a quantum bath
- Bismuth in silicon qubits: the role of EPR cancellation resonances
Cited by in corpus (124)
- Sensitivity Optimization for NV-Diamond Magnetometry
- Coherent control of single spins in silicon carbide at room temperature
- Detection and control of individual nuclear spins using a weakly coupled electron spin
- Sensing remote nuclear spins
- Quantum decoherence dynamics of divacancy spins in silicon carbide
- Quantum memory for microwave photons in an inhomogeneously broadened spin ensemble
- Quantum many-body theory for electron spin decoherence in nanoscale nuclear spin baths
- Enhancing spin-phonon and spin-spin interactions using linear resources in a hybrid quantum system
- Three stage decoherence dynamics of electron spin qubits in an optically active quantum dot
- Single-molecule Scale Magnetic Resonance Spectroscopy using Nitrogen-Vacancy Centers in Diamond
- Noisy intermediate-scale quantum computers
- Coherence-protected Quantum Gate by Continuous Dynamical Decoupling in Diamond
- Sensing and atomic-scale structure analysis of single nuclear spin clusters in diamond
- Electron Spin Decoherence in Silicon Carbide Nuclear Spin Bath
- Quantum Decoherence of the Central Spin in a Sparse System of Dipolar Coupled Spins
- High-Sensitivity Temperature Sensing Using an Implanted Single Nitrogen-Vacancy Center Array in Diamond
- Experimental Observation of a Generalized Thouless Pump with a Single Spin
- Generating Large Cats with Nine Lives: Long-Lived Macroscopically Distinct Superposition States in Atomic Ensembles
- Spin decoherence and electron spin bath noise of a nitrogen-vacancy center in diamond
- Observation of anomalous decoherence effect in a quantum bath at room temperature
- Atomic-scale nuclear spin imaging using quantum-assisted sensors in diamond
- Noise-resilient quantum evolution steered by dynamical decoupling
- Single-Shot Readout of a Nuclear Spin Weakly Coupled to a Nitrogen-Vacancy Center
- Probing the coherence of solid-state qubits at avoided crossings
- Converting a real quantum bath to an effective classical noise
- Storage and retrieval of microwave fields at the single-photon level in a spin ensemble
- Coherence and entanglement of inherently long-lived spin pairs in diamond
- Dynamical decoupling based quantum sensing: Floquet spectroscopy
- Room-temperature optically detected coherent control of molecular spins
- Uncovering many-body correlations in nanoscale nuclear spin baths by central spin decoherence
- Towards chemical structure resolution with nanoscale nuclear magnetic resonance spectroscopy
- Towards a spin-ensemble quantum memory for superconducting qubits
- Free induction decay of single spins in diamond
- Ramsey interferences and spin echoes from electron spins inside a levitating macroscopic particle
- Self-assembling hybrid diamond-biological quantum devices
- Quantum bath-driven decoherence of mixed spin systems
- Optimal control of fast and high-fidelity quantum gates with electron and nuclear spins of a nitrogen-vacancy center in diamond
- Preparing multiparticle entangled states of NV centers via adiabatic ground-state transitions
- Delayed entanglement echo for individual control of a large number of nuclear spins
- Sensing individual nuclear spins with a single rare-earth electron spin
- Magnetic pseudo-fields in a rotating electron-nuclear spin system
- Room-temperature ultra-sensitive mass spectrometer via dynamic decoupling
- Decoherence of two entangled spin qubits coupled to an interacting sparse nuclear spin bath: application to nitrogen vacancy centers
- Geometric spin echo under zero field
- Longitudinal spin relaxation model applied to point defect qubit systems
- Experimental observation of dynamical bulk-surface correspondence for topological phases
- Longitudinal relaxation of a nitrogen-vacancy center in a spin bath by generalized cluster-correlation expansion method
- Equivalence of qubit-environment entanglement and discord generation via pure dephasing interactions and the consequences thereof
- Three-level spin system under decoherence-minimizing driving fields: Application to nitrogen-vacancy spin dynamics
- How to detect qubit-environment entanglement generated during qubit dephasing
- -limited sensing of static magnetic fields via fast rotation of quantum spins
- Mapping the local spatial charge in defective diamond by means of NV sensors - A "self-diagnostic" concept
- Influence of nuclear spin polarization on spin echo signal of NV center qubit
- Decoherence of nuclear spins in the "frozen core" of an electron spin
- Measuring central-spin interaction with a spin bath by pulsed ENDOR: Towards suppression of spin diffusion decoherence
- Dynamical decoupling of a geometric qubit
- Protection of center-spin coherence by dynamically polarizing nuclear spin core in diamond
- Probing the dynamics of a nuclear spin bath in diamond through time-resolved central spin magnetometry
- Resolving Remoter Nuclear Spins in a Noisy Bath by Dynamical Decoupling Design
- Reviving the precision of multiple entangled probes in an open system by simple -pulse sequences
- Optimisation of diamond quantum processors
- Magnetic field noise analyses generated by the interactions between a nitrogen vacancy center diamond and surface and bulk impurities
- Decay of the rotary echoes for the spin of a nitrogen-vacancy center in diamond
- Extending qubit coherence by adaptive quantum environment learning
- Cluster-correlation expansion for studying decoherence of clock transitions in spin baths
- Thermodynamic Constraints on Quantum Information Gain and Error Correction: A Triple Trade-Off
- Quantum metrology with one auxiliary particle in a correlated bath and its quantum simulation
- Decoherence of Nuclear Spins in the Proximity of Nitrogen Vacancy Centers in Diamond
- Keeping a spin qubit alive in natural silicon: Comparing optimal working points and dynamical decoupling
- Precise high-fidelity electron-nuclear spin entangling gates in NV centers via hybrid dynamical decoupling sequences
- Non-Markovian dynamics in a spin star system: The failure of thermalization
- Detecting magnetic fields using Nitrogen-Vacancy Centers
- Quantum simulation of the central spin model with a Rydberg atom and polar molecules in optical tweezers
- Pulsed Low-Field Electrically Detected Magnetic Resonance
- Performance of quantum registers in diamond in the presence of spin impurities
- DC Quantum Magnetometry Below the Ramsey Limit
- Qubit-environment entanglement generation and the spin echo
- A measure of qubit environment entanglement for pure dephasing evolutions
- Qubit-environment Negativity versus Fidelity of conditional environmental states for an NV-center spin qubit interacting with a nuclear environment
- Optical nonreciprocity in rotating diamond with nitrogen-vacancy center
- Detection of entanglement during pure dephasing evolutions for systems and environments of any size
- Transfer and teleportation of system-environment entanglement
- Coherence properties of NV-center ensembles in diamond coupled to an electron-spin bath
- Nuclear Spin Engineering for Quantum Information Science
- Realization of quantum Maxwell's demon with solid-state spins
- Noisy Coherent Population Trapping: Applications to Noise Estimation and Qubit State Preparation
- Characterization of a quasi-static environment with a qubit
- Theory of Metastability in Discrete-Time Open Quantum Dynamics
- Single-photon pulse induced giant response in N100 qubit system
- Understanding Decoherence of the Boron Vacancy Center in Hexagonal Boron Nitride
- Appearance of objectivity for NV centers interacting with dynamically polarized nuclear environment
- Magnetic-field dependent VB- spin decoherence in hexagonal boron nitrides: A first-principles study
- Robust population transfer of spin states by geometric formalism
- Quantum computation in silicon-vacancy centers based on nonadiabatic geometric gates protected by dynamical decoupling
- Atomic-scale positioning of single spins via multiple nitrogen-vacancy centers
- Towards dislocation-driven quantum interconnects
- Exponentially enhanced gravitationally induced entanglement between quantum systems with a two-phonon drive
- Generalized scaling of spin qubit coherence in over 12,000 host materials
- Low temperature decoherence dynamics in molecular spin systems using the Lindblad master equation
- High-Fidelity Entangling Gates for Electron and Nuclear Spin Qubits in Diamond
- Time-delayed quantum feedback and incomplete decoherence suppression with no-knowledge measurement
- Anisotropic electron-nuclear interactions in a rotating quantum spin bath
- First-principles computational methods for quantum defects in two-dimensional materials: A perspective
- Qubit-environment entanglement in time-dependent pure dephasing
- Real-time adaptive sensing of nuclear spins by a single-spin quantum sensor
- The field-induced interaction between non-resonant magnetic dipoles
- Room-temperature Composite-pulses for Robust Diamond Magnetometry
- Wavelet-based Ramsey magnetometry enhancement of a single NV center in diamond
- Quantum beats and metrology in a rapidly rotating Nitrogen-Vacancy center
- Experimental protocol for qubit-environment entanglement detection
- Quantum decoherence of nitrogen-vacancy spin ensembles in a nitrogen spin bath in diamond under dynamical decoupling
- Extended T2 times of shallow implanted NV in chemically mechanically polished diamond
- Anomalous external-magnetic-field dependence of dephasing in a spin bath
- Estimation of nuclear polarization via discrete measurement of NV center spin evolution
- Optimal demonstration of Autler Townes splitting
- The field induced magnetic dipolar interaction for general boundary conditions
- Logarithmic growth of peripheral entanglement concentrated via noisy measurements in a star network of spins
- Electronic Noise Considerations for Designing Integrated Solid-State Quantum Memories
- Quantum discord in the central spin model
- Quantum refrigerator embedded in spin-star environments: Scalings of temperature and refrigeration time
- PyCCE: A Python Package for Cluster Correlation Expansion Simulations of Spin Qubit Dynamic
- High-throughput spin-bath characterization of spin-defects in semiconductors
- Magnetic dipole-dipole interaction induced by the electromagnetic field
- Suppression of coherent errors during entangling operations in NV centers in diamond