Experimental demonstration of two-photon magnetic resonances in a single-spin-system of a solid
arXiv:1712.04615 · doi:10.1103/PhysRevA.100.023801
Abstract
While the manipulation of quantum systems is significantly developed so far, achieving a single-source multi-use system for quantum-information processing and networks is still challenging. A virtual state, a so-called ``dressed state," is a potential host for quantum hybridizations of quantum physical systems with various operational ranges. We present an experimental demonstration of a dressed state generated by two-photon magnetic resonances using a single spin in a single nitrogen-vacancy center in diamond. The two-photon magnetic resonances occur under the application of microwave and radio-frequency fields, with different operational ranges. The experimental results reveal the behavior of two-photon magnetic transitions in a single defect spin in a solid, thus presenting new potential quantum and semi-classical hybrid systems with different operational ranges using superconductivity and spintronics devices.
9 pages, 7 figures, Revised manuscript and figures
References in corpus (13)
- The Quantum Internet
- Quantum technologies with hybrid systems
- Unconditional quantum teleportation between distant solid-state qubits
- Coherence of single spins coupled to a nuclear spin bath of varying density
- Hybrid quantum device with nitrogen-vacancy centers in diamond coupled to carbon nanotubes
- Topical Review: Spins and mechanics in diamond
- High fidelity transfer and storage of photon states in a single nuclear spin
- Photophysics of single nitrogen-vacancy centers in diamond nanocrystals
- Protecting a solid-state spin from decoherence using dressed spin states
- Coherent population trapping of a single nuclear spin under ambient conditions
- Coherent population oscillations with nitrogen-vacancy color centers in diamond
- Hybrid quantum magnetic field sensor with an electron spin and a nuclear spin in diamond
- Coupling a single Nitrogen-Vacancy center to a superconducting flux qubit in the far off resonance regime
Cited by in corpus (5)
- Simultaneous blockade of a photon phonon, and magnon induced by a two-level atom
- Bandwidth analysis of AC magnetic field sensing based on electronic spin double resonance of nitrogen-vacancy centers in diamond
- Electron-spin double resonance of nitrogen-vacancy centers in diamond under strong driving field
- Radiofrequency response of the optically detected level anti-crossing signal in NV color centers in diamond in zero and weak magnetic fields
- Elastic Softening in Synthetic Diamonds