Environmentally mediated coherent control of a spin qubit in diamond
arXiv:1702.05822 · doi:10.1103/PhysRevLett.118.167204
Abstract
The coherent control of spin qubits forms the basis of many applications in quantum information processing and nanoscale sensing, imaging and spectroscopy. Such control is conventionally achieved by direct driving of the qubit transition with a resonant global field, typically at microwave frequencies. Here we introduce an approach that relies on the resonant driving of nearby environment spins, whose localised magnetic field in turn drives the qubit when the environmental spin Rabi frequency matches the qubit resonance. This concept of environmentally mediated resonance (EMR) is explored experimentally using a qubit based on a single nitrogen-vacancy (NV) centre in diamond, with nearby electronic spins serving as the environmental mediators. We demonstrate EMR driven coherent control of the NV spin-state, including the observation of Rabi oscillations, free induction decay, and spin-echo. This technique also provides a way to probe the nanoscale environment of spin qubits, which we illustrate by acquisition of electron spin resonance spectra of single NV centres in various settings.
12 pages including SI
References in corpus (5)
- Quantum Computing
- Nanoscale magnetic imaging of a single electron spin under ambient conditions
- Spectroscopy of Surface-Induced Noise Using Shallow Spins in Diamond
- Radio-frequency magnetometry using a single electron spin
- Spin dynamics of diamond nitrogen-vacancy centres at the ground state level anti-crossing and all-optical low frequency magnetic field sensing
Cited by in corpus (8)
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- Longitudinal relaxation of a nitrogen-vacancy center in a spin bath by generalized cluster-correlation expansion method
- Spin-Weyl quantum unit: theoretical proposal
- High precision single qubit tuning via thermo-magnetic field control
- Optical signatures of Mott-superfluid transition in nitrogen-vacancy centers coupled to photonic crystal cavities
- Properties of collective Rabi oscillations with two Rydberg atoms
- Room-temperature Composite-pulses for Robust Diamond Magnetometry