Sensing remote nuclear spins
arXiv:1204.6513 · doi:10.1038/nnano.2012.152
Abstract
Sensing single nuclear spins is a central challenge in magnetic resonance based imaging techniques. Although different methods and especially diamond defect based sensing and imaging techniques in principle have shown sufficient sensitivity, signals from single nuclear spins are usually too weak to be distinguished from background noise. Here, we present the detection and identification of remote single C-13 nuclear spins embedded in nuclear spin baths surrounding a single electron spins of a nitrogen-vacancy centre in diamond. With dynamical decoupling control of the centre electron spin, the weak magnetic field ~10 nT from a single nuclear spin located ~3 nm from the centre with hyperfine coupling as weak as ~500 Hz is amplified and detected. The quantum nature of the coupling is confirmed and precise position and the vector components of the nuclear field are determined. Given the distance over which nuclear magnetic fields can be detected the technique marks a firm step towards imaging, detecting and controlling nuclear spin species external to the diamond sensor.
References in corpus (14)
- Dynamical decoupling and noise spectroscopy with a superconducting flux qubit
- Universal dynamical decoupling of a single solid-state spin from a spin bath
- How to Enhance Dephasing Time in Superconducting Qubits
- Extending Quantum Coherence in Diamond
- Detection and control of individual nuclear spins using a weakly coupled electron spin
- Engineering shallow spins in diamond with nitrogen delta-doping
- Dynamical Decoupling of a single electron spin at room temperature
- Sensing distant nuclear spins with a single electron spin
- 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
- Direct Measurement of the System-Environment Coupling as a Tool For Understanding Decoherence and Dynamical Decoupling
- Anomalous decoherence effect in a quantum bath
Cited by in corpus (167)
- Coherent control of single spins in silicon carbide at room temperature
- Quantum error correction in a solid-state hybrid spin register
- Unconditional quantum teleportation between distant solid-state qubits
- A 10-qubit solid-state spin register with quantum memory up to one minute
- Entanglement-based single-shot detection of a single magnon with a superconducting qubit
- Universal control and error correction in multi-qubit spin registers in diamond
- Magnetic spin imaging under ambient conditions with sub-cellular resolution
- One-second coherence for a single electron spin coupled to a multi-qubit nuclear-spin environment
- Atomic-scale imaging of a 27-nuclear-spin cluster using a single-spin quantum sensor
- Detecting and polarizing nuclear spins with double resonance on a single electron spin
- Experimental implementation of assisted quantum adiabatic passage in a single spin
- High-Resolution Correlation Spectroscopy of 13C Spins Near a Nitrogen-Vacancy Center in Diamond
- Proton magnetic resonance imaging with a nitrogen-vacancy spin sensor
- Absolute magnetometry based on quantum beats in diamond nitrogen-vacancy centers
- Introduction to Quantum Optimal Control for Quantum Sensing with Nitrogen-Vacancy Centers in Diamond
- Nanomechanical sensing using spins in diamond
- Quantum many-body theory for electron spin decoherence in nanoscale nuclear spin baths
- Ultrasensitive optical magnetometry at the microscale
- Single-molecule Scale Magnetic Resonance Spectroscopy using Nitrogen-Vacancy Centers in Diamond
- Parallel single-shot measurement and coherent control of solid-state spins below the diffraction limit
- Scanning probe microscopy with chemical contrast by nanoscale nuclear magnetic resonance
- Noisy intermediate-scale quantum computers
- Manipulating a qubit through the backaction of sequential partial measurements and real-time feedback
- Probing Lee-Yang zeros and coherence sudden death
- Sensing and atomic-scale structure analysis of single nuclear spin clusters in diamond
- Nuclear spin-wave quantum register for a solid state qubit
- Bayesian parameter inference from continuously monitored quantum systems
- The Theory of Spin Noise Spectroscopy: A Review
- Spurious harmonic response of multipulse quantum sensing sequences
- High-Sensitivity Temperature Sensing Using an Implanted Single Nitrogen-Vacancy Center Array in Diamond
- Enhanced quantum coherence in exchange coupled spins via singlet-triplet transitions
- Experimental Observation of a Generalized Thouless Pump with a Single Spin
- High-resolution spectroscopy of single nuclear spins via sequential weak measurements
- Single spin stochastic optical reconstruction microscopy
- Hybrid sensors based on colour centres in diamond and piezoactive layers
- Robust Dynamical Decoupling Sequences for Individual Nuclear Spin Addressing
- Detecting External Electron Spins Using Nitrogen-Vacancy Centers
- Review: Quantum Metrology and Sensing with Many-Body Systems
- Optimal control for one-qubit quantum sensing
- Dephasing mechanisms of diamond-based nuclear-spin memories for quantum networks
- Noise-resilient quantum evolution steered by dynamical decoupling
- Single Spin Magnetic Resonance
- Precision Limits in Quantum Metrology with Open Quantum Systems
- Single-Shot Readout of a Nuclear Spin Weakly Coupled to a Nitrogen-Vacancy Center
- Hybrid opto-mechanical systems with nitrogen-vacancy centers
- Dynamical decoupling based quantum sensing: Floquet spectroscopy
- Uncovering many-body correlations in nanoscale nuclear spin baths by central spin decoherence
- Towards chemical structure resolution with nanoscale nuclear magnetic resonance spectroscopy
- Quantum sensing of a coherent single spin excitation in a nuclear ensemble
- Time-Optimal Universal Control of Two-Level Systems under Strong Driving
- Novel color center platforms enabling fundamental scientific discovery
- Noise-resilient Quantum Computing with a Nitrogen-Vacancy Center and Nuclear Spins
- Observation of entanglement sudden death and rebirth by controlling solid-state spin bath
- Non-Markovianity-assisted high-fidelity Deutsch-Jozsa algorithm in diamond
- Three-dimensional localization spectroscopy of individual nuclear spins with sub-Angstrom resolution
- Non-flipping 13C spins in NV diamond: Hyperfine and Spatial Characteristics by DFT Simulation of the C510[NV]H252 Cluster
- Optimal control of fast and high-fidelity quantum gates with electron and nuclear spins of a nitrogen-vacancy center in diamond
- Noise spectroscopy of a quantum-classical environment with a diamond qubit
- Positioning Nuclear Spins in Interacting Clusters for Quantum Technologies and Bio-imaging
- Demonstration of Entanglement-Enhanced Phase Estimation in Solid
- Dynamical decoupling design for identifying weakly coupled nuclear spins in a bath
- Picotesla-sensitivity microcavity optomechanical magnetometry
- A multiconfigurational study of the negatively charged nitrogen-vacancy center in diamond
- Randomisation of Pulse Phases for Unambiguous and Robust Quantum Sensing
- High resolution quantum sensing with shaped control pulses
- Delayed entanglement echo for individual control of a large number of nuclear spins
- Soft Quantum Control for Highly Selective Interactions among Joint Quantum Systems
- Sensing individual nuclear spins with a single rare-earth electron spin
- Room-temperature ultra-sensitive mass spectrometer via dynamic decoupling
- Suppression of electron spin decoherence of the diamond NV center by a transverse magnetic field
- Coherent control of a nuclear spin via interactions with a rare-earth ion in the solid-state
- Quantum Control for Nanoscale Spectroscopy With Diamond Nitrogen-Vacancy Centers: A Short Review
- Optically Detected Cross-Relaxation Spectroscopy of Electron Spins in Diamond
- Three-dimensional nuclear spin positioning using coherent radio-frequency control
- Optimal design of diamond-air microcavities for quantum networks using an analytical approach
- Construction and operation of a tabletop system for nanoscale magnetometry with single nitrogen-vacancy centers in diamond
- Optically detected nuclear quadrupolar interaction of 14N in nitrogen-vacancy centers in diamond
- Angstrom-resolution magnetic resonance imaging of single molecules via wavefunction fingerprints of nuclear spins
- Anisotropic hyperfine interaction of surface-adsorbed single atoms
- Deep learning enhanced individual nuclear-spin detection
- Hybrid Architecture for Engineering Magnonic Quantum Networks
- Arbitrary Nuclear Spin Gates in Diamond Mediated by a NV-center Electron Spin
- Parallel detection and spatial mapping of large nuclear spin clusters
- Determination of the Position of a Single Nuclear Spin from Free Nuclear Precessions Detected by a Solid-State Quantum Sensor
- Quantum nonlinear spectroscopy of single nuclear spins
- Room-temperature detection of single 20 nm super-paramagnetic nanoparticles with an imaging magnetometer
- Proposal for enhanced resolution in nanoscale NMR: quantum sensing with pulses of finite duration
- Decoherence of nuclear spins in the "frozen core" of an electron spin
- Complete Quantum-State Tomography with a Local Random Field
- Si nuclear spins as a resource for donor spin qubits in silicon
- Coherent microwave, optical, and mechanical quantum control of spin qubits in diamond
- Vector magnetic field sensing by single nitrogen vacancy center in diamond
- Ultralong spin coherence times for rubidium atoms in solid parahydrogen via dynamical decoupling
- Low field nano-NMR via three-level system control
- 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
- The non-vanishing effect of detuning errors in dynamical decoupling based quantum sensing experiments
- Modulated Continuous Wave Control for Energy-efficient Electron-nuclear Spin Coupling
- Broadband Excitation by Chirped Pulses: Application to Single Electron Spins in Diamond
- Pulse-phase control for spectral disambiguation in quantum sensing protocols
- Resolving Remoter Nuclear Spins in a Noisy Bath by Dynamical Decoupling Design
- Atomic-scale structure analysis of a molecule at a (6-nanometer) ice crystal
- Shaped Pulses for Energy Efficient High-Field NMR at the Nanoscale
- Decay of the rotary echoes for the spin of a nitrogen-vacancy center in diamond
- Observation of liquid-solid transition of nanoconfined water at ambient temperature
- All-optical high-resolution magnetic resonance using a nitrogen-vacancy spin in diamond
- NV-Center Based Digital Quantum Simulation of a Quantum Phase Transition in Topological Insulators
- Efficient detection of inhomogeneous magnetic fields from a single spin with Dicke states
- Cross-relaxation studies with optically detected magnetic resonances in nitrogen-vacancy centers in diamond in an external magnetic field
- Extending qubit coherence by adaptive quantum environment learning
- Keeping a spin qubit alive in natural silicon: Comparing optimal working points and dynamical decoupling
- Dual-channel lock-in magnetometer with a single spin in diamond
- Classical-noise-free sensing based on quantum correlation measurement
- Proposal for Quantum Sensing Based on Two-Dimensional Dynamical Decoupling: NMR Correlation Spectroscopy of Single Molecules
- Improving spin-based noise sensing by adaptive measurements
- Enhancing the robustness of dynamical decoupling sequences with correlated random phases
- Filter design for hybrid spin gates
- Entanglement-Enhanced Nanoscale Single-Spin Sensing
- Extending the Electron Spin Coherence Time of Atomic Hydrogen by Dynamical Decoupling
- Noise-resilient architecture of a hybrid electron-nuclear quantum register in diamond
- Detection and control of single proton spins in a thin layer of diamond grown by chemical vapor deposition
- Non-Markovian transient spectroscopy in cavity QED
- Dynamical decoupling methods in nanoscale NMR
- Coherent control of an NV center with one adjacent 13C
- Dissipatively stabilized quantum sensor based on indirect nuclear-nuclear interactions
- Probing Conformal Invariant of Non-unitary Two-Dimensional Systems by Central Spin Decoherence
- Multi-state and multi-hypothesis discrimination with open quantum systems
- Unambiguous nuclear spin detection using engineered quantum sensing sequence
- Ambiguous Resonances in Multipulse Quantum Sensing with Nitrogen Vacancy Centers
- 1/f noise in quantum nanoscience
- Multidimensional spectroscopy of nuclear spin clusters in diamond
- Appearance of objectivity for NV centers interacting with dynamically polarized nuclear environment
- Improving quantum parameter estimation by monitoring quantum trajectories
- Control of solid-state nuclear spin qubits using an electron spin-1/2
- Optical and spin-coherence properties of rubidium atoms trapped in solid neon
- Maximizing the purity of a qubit evolving in an anisotropic environment
- Double Quantum Magnetometry at Large Static Magnetic Fields
- Single Spin Detection with Entangled States
- Qubit guidelines for solid-state spin defects
- Localization of a magnetic moment using a two-qubit probe
- Atomic-scale positioning of single spins via multiple nitrogen-vacancy centers
- Transition between continuous and discrete spectra in dynamical-decoupling noise spectroscopy
- Algorithmic decomposition for efficient multiple nuclear spin detection in diamond
- Quantum Sensing Enhancement through a Nuclear Spin Register in Nitrogen-Vacancy Centers in Diamond
- Fidelity of photon-mediated entanglement between remote nuclear-spin multi-qubit registers
- High-Fidelity Entangling Gates for Electron and Nuclear Spin Qubits in Diamond
- Indirect quantum sensors: Improving the sensitivity in characterizing very weakly coupled spins
- Anisotropic electron-nuclear interactions in a rotating quantum spin bath
- An efficient fluorescent single-particle position tracking system for long-term pulsed measurements of nitrogen-vacancy centers in diamond
- Selective nuclear-spin interaction based on a dissipatively stabilized nitrogen-vacancy center
- Experimental protection of the coherence of a molecular qubit exceeding a millisecond
- Time-dependent Hamiltonian estimation for Doppler velocimetry of trapped ions
- Channel-based framework for phase esimation of multiple eigenvalues
- Local probing of nuclear bath polarization with a single electronic spin
- Laser writing of scalable single colour centre in silicon carbide
- Augmenting the spin properties of shallow implanted NV-centers by CVD-overgrowth
- Numerically exact quantum dynamics with tensor networks: Predicting the decoherence of interacting spin systems
- Isotope engineering of silicon and diamond for quantum computing and sensing applications
- Four-order power reduction in nanoscale electron-nuclear double resonance with a nitrogen-vacancy center in diamond
- Pulse-controlled quantum gate sequences on a strongly coupled qubit chain
- A nitrogen-vacancy spin based molecular structure microscope using multiplexed projection reconstruction
- Suppression of coherent errors during entangling operations in NV centers in diamond
- Suppression of spin bath and low-frequency noise for sub-MHz AC magnetometry based on double-dressed spin qubit in diamond
- Quantum Sensing by Using STIRAP with Dressed States Driving
- Probing the collective dynamics of nuclear spin bath in a rare-earth ion doped crystal
- Decoherence imaging of spin ensembles using a scanning single-electron spin in diamond
- Diamond spin sensors: A new way to probe nanomagnetism