Synchronizing the dynamics of a single NV spin qubit on a parametrically coupled radio-frequency field through microwave dressing
arXiv:1310.3789 · doi:10.1103/PhysRevLett.112.010502
Abstract
A hybrid spin-oscillator system in parametric interaction is experimentally emulated using a single NV spin qubit immersed in a radio frequency (RF) field and probed with a quasi resonant microwave (MW) field. We report on the MW mediated locking of the NV spin dynamics onto the RF field, appearing when the MW driven Rabi precession frequency approaches the RF frequency and for sufficiently large RF amplitudes. These signatures are analog to a phononic Mollow triplet in the MW rotating frame for the parametric interaction and promise to have impact in spin-dependent force detection strategies.
References in corpus (10)
- Dynamic polarization of single nuclear spins by optical pumping of NV color centers in diamond at room temperature
- Strong coupling between single-electron tunneling and nano-mechanical motion
- Single Ion Quantum Lock-In Amplifier
- Single-spin magnetometry with multi-pulse sensing sequences
- Bose-Einstein condensate coupled to a nanomechanical resonator on an atom chip
- Room-temperature manipulation and decoherence of a single spin in diamond
- Radio-frequency magnetometry using a single electron spin
- Coherent, mechanical control of a single electronic spin
- Measuring mechanical motion with a single spin
- Multiplication of Qubits in a Doubly Resonant Bichromatic Field
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- Hybrid continuous dynamical decoupling: a photon-phonon doubly dressed spin
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- Relaxation, decoherence and steady-state population inversion in qubits doubly dressed by microwave and radiofrequency fields
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- Predictive Semiclassical Model for Coherent and Incoherent Emission in the Strong Field Regime: The Mollow Triplet Revisited
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- Bistability of a slow mechanical oscillator coupled to a laser-driven two-level system
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- Microwave Photon Antibunching at the Modulation of the Resonance Frequency of a Qubit Emitter
- The possibility of direct observation of the Bloch-Siegert shift in coherent dynamics of multiphoton Raman transitions
- Observation of symmetry-protected selection rules in periodically driven quantum systems